Peer-Reviewed Publications

(*indicates invited paper, #indicates cover article)
To request reprints, please contact Mark Hersam: m-hersam@northwestern.edu

2024

[644] G. Finocchio, J. A. C. Incorvia, J. S. Friedman, Q. Yang, A. Giordano, J. Grollier, H. Yang, F. Ciubotaru, A. V. Chumak, A. J. Naeemi, S. D. Cotofana, R. Tomasello, C. Panagopoulos, M. Carpentieri, P. Lin, G. Pan. J. J. Yang, A. Todri-Sanial, G. Boschetto, K. Makasheva, V. K. Sangwan, A. R. Trivedi, M. C. Hersam, K. Y. Camsari, P. L. McMahon, S. Datta, B. Koiller, G. H. Aguilar, G. P. Temporao, D. R. Rodrigues, S. Sunada, K. Everschor-Sitte, K. Tatsumura, H. Goto, V. Puliafito, J. Åkerman, H. Takesue, M. Di Ventra, Y. V. Pershin, S. Mukhopadhyay, K. Roy, I.-T. Wang, W. Kang, Y. Zhu, B. K. Kaushik, J. Hasler, S. Ganguly, A. W. Ghosh, W. Evy, V. Roychowdhury, and S. Bandyopadhyay, “Roadmap for unconventional computing with nanotechnology,” Nano Futures, 8, 012001 (2024).

[643] Y. Yang, C. Liu, Y. Ding, B. Ding, J. Xu, A. Liu, J. Yu, L. Grater, H. Zhu, S. S. Hadke, V. K. Sangwan, A. S. R. Bati, X. Hu, J. Li, S. M. Park, M. C. Hersam, B. Chen, M. K. Nazeeruddin, M. G. Kanatzidis, and E. H. Sargent, “A thermotropic liquid crystal enables efficient and stable perovskite solar modules,” Nature Energy, 9, 316 (2024).

[642] C. D. Morris, E. K. Qian, P. E. Meza, V. K. Sangwan, C. D. Malliakas, M. C. Hersam, and M. G. Kanatzidis, “Nanotube structure of AsPS4-xSex (x = 0, 1),” Inorg. Chem., 63, 4915 (2024).

[641] C. M. Smyth, J. M. Cain, A. Boehm, J. A. Ohlhausen, M. N. Lam, X. Yan, S. E. Liu, T. T. Zeng, V. K. Sangwan, M. C. Hersam, S. S. Chou, T. Ohta, and T.-M. Lu, “Direct characterization of buried interfaces in 2D/3D heterostructures enabled by GeO2 release layer,” ACS Appl. Mater. Interfaces, 16, 2847 (2024).

[640] C. G. Torres-Castanedo, D. B. Buchholz, T. Pham, L. Zheng, M. Cheng, V. P. Dravid, M. C. Hersam, and M. J. Bedzyk, “Ultrasmooth epitaxial Pt thin films grown by pulsed laser deposition,” ACS Appl. Mater. Interfaces, 16, 1921 (2024).

[639] J. M. Buriak, M. C. Hersam, and P. V. Kamat, “Can ChatGPT and other AI bots serve as peer reviewers?” ACS Energy Lett., 9, 191 (2024).

#[638] Q. Li, L. Wang, H. Li, M. K. Y. Chan, and M. C. Hersam, “Synthesis of quantum-confined borophene nanoribbons,” ACS Nano, 18, 483 (2024).

2023

[637] X. Yan, Z. Zheng, V. K. Sangwan, J. H. Qian, X. Wang, S. E. Liu, K. Watanabe, T. Taniguchi, S.-Y. Xu, P. Jarillo-Herrero, Q. Ma, and M. C. Hersam, “Moiré synaptic transistor with room-temperature neuromorphic functionality,” Nature, 624, 551 (2023).

[636] L. Gamba, M. E. Abdur Razzaq, S. Diaz-Arauzo, M. C. Hersam, X. Bai, and E. B. Secor, “Tailoring electrical properties in carbon nanomaterial patterns with multi-material aerosol jet printing,” ACS Appl. Mater. Interfaces, 15, 57525 (2023).

#[635] X. Sui, S. V. Rangnekar, J. Lee, S. E. Liu, J. R. Downing, L. E. Chaney, X. Yan, H.-J. Jang, H. Pu, X. Shi, S. Zhou, M. C. Hersam, and J. Chen, “Fully inkjet-printed, 2D materials-based field-effect transistor for water sensing,” Adv. Mater. Technol., 8, 2301288 (2023).

[634] M. J. Moody, J. T. Paul, P. J. M. Smeets, R. dos Reis, J.-S. Kim, C. E. Mead, J. T. Gish, M. C. Hersam, M. K. Y. Chan, and L. J. Lauhon, “Van der Waals epitaxy, superlubricity, and polarization of the 2D ferroelectric SnS,” ACS Appl. Mater. Interfaces, 15, 56150 (2023).

[633] L. Gamba, S. Diaz-Arauzo, M. C. Hersam, and E. B. Secor, “Aerosol jet printing of phase-inversion graphene inks for high-aspect-ratio printed electronics and sensors,” ACS Appl. Nano Mater., 6, 21133 (2023).

[632] D. Kim, M. Safdari, S. W. Lee, C. Liu, Y. Yang, S. D. Namgung, E. H. Sargent, M. C. Hersam, D.-H. Kim, and M. G. Kanatzidis, “Enhanced photostability of “hollow” mixed halide wide-bandgap perovskite films,” ACS Energy Lett., 8, 5221 (2023).

[631] X. Yan, J. H. Qian, J. Ma, A. Zhang, S. E. Liu, M. P. Bland, K. J. Liu, X. Wang, V. K. Sangwan, H. Wang, and M. C. Hersam, “Reconfigurable mixed-kernel heterojunction transistors for personalized support vector machine classification,” Nature Electronics, 6, 862 (2023).

*[630] B. M. Szydłowska, Z. Cai, and M. C. Hersam, “Printed nanomaterial sensor platforms for COVID-19 and future pandemics,” Curr. Opin. Solid State Mater. Sci., 27, 101121 (2023).

[629] C. Liu, Y. Yang, H. Chen, J. Xu, A. Liu, A. S. R. Bati, H. Zhu, L. Grater, S. S. Hadke, C. Huang, V. K. Sangwan, T. Cai, D. Shin, L. X. Chen, M. C. Hersam, C. A. Mirkin, B. Chen, M. G. Kanatzidis, and E. H. Sargent, “Bimolecularly passivated interface enables efficient and stable inverted perovskite solar cells,” Science, 382, 810 (2023).

[628] Y. Lee, S. H. Lee, S. K. Han, J. Park, D. Lee, D. J. Preston, I. S. Kim, M. C. Hersam, Y. Kwon, B. Shong, and W.-K. Lee, “Strain-enabled local phase control in layered MoTe2 for enhanced electrocatalytic hydrogen evolution,” ACS Energy Lett., 8, 4716 (2023).

[627] L. M. Liz-Marzán, N. Artzi, S. Bals, J. M. Buriak, W. C. W. Chan, X. Chen, M. C. Hersam, I.-D. Kim, J. E. Millstone, P. Mulvaney, W. J. Parak, A. Rogach, and R. E. Schaak, “Celebrating a Nobel Prize to the discovery of quantum dots, an essential milestone in nanoscience,” ACS Nano, 17, 19474 (2023).

*[626] M. I. B. Utama, A. Dasgupta, R. Ananth, E. A. Weiss, T. J. Marks, and M. C. Hersam, “Mixed-dimensional heterostructures for quantum photonic science and technology,” MRS Bull., 48, 905 (2023).

[625] G. Li, F. Qin, R. M. Jacobberger, S. Mukherjee, L. O. Jones, R. M. Young, R. M. Pankow, B. P. Kerwin, L. Q. Flagg, D. Zheng, L-W. Feng, K. L. Kohlstedt, V. K. Sangwan, M. C. Hersam, G. C. Schatz, D. M. DeLongchamp, M. R. Wasielewski, Y. Zhou, A. Facchetti, and T. J. Marks, “What is the role of non-fullerene acceptor symmetry in polymer solar cell efficiency?,” Joule, 7, 2152 (2023).

[624] N. P. Bradshaw, Z. Hirani, L. Kuo, S. Li, N. X. Williams, V. K. Sangwan, L. E. Chaney, A. M. Evans, W. R. Dichtel, and M. C. Hersam, “Aerosol-jet-printable covalent organic framework colloidal inks and temperature-sensitive nanocomposite films,” Adv. Mater., 35, 2303673 (2023).

[623] S. V. Rangnekar, V. K. Sangwan, M. Jin, M. Khalaj, B. M. Szydłowska, A. Dasgupta, L. Kuo, H. E. Kurtz, T. J. Marks, and M. C. Hersam, “Electroluminescence from megasonically solution-processed MoS2 nanosheet films,” ACS Nano, 17, 17516 (2023).

[622] L. Li, J. F. Schultz, S. Mahapatra, X. Liu, X. Zhang, M. C. Hersam, and N. Jiang, “Atomic-scale insights into the interlayer characteristics and oxygen reactivity of bilayer borophene,” Angew. Chem. Int. Ed., 62, e202306590 (2023).

[621] A. R. C. McCray, D. Lebedev, S. Arpaci, S. G. E. te Velthuis, V. Lopez Dominguez, P. Khalili Amiri, M. C. Hersam, A. K. Petford-Long, and C. Phatak, “Control of magnetic skyrmions in an exchange biased van der Waals ferromagnet,” Microsc. Microanal., 29, 1710 (2023).

[620] C. G. Torres-Castanedo, G. Evmenenko, N. S. Luu, P. Masih Das, W. J. Hyun, K.-Y. Park, V. P. Dravid, M. C. Hersam, and M. J. Bedzyk, “Enhanced LiMn2O4 thin-film electrode stability in ionic liquid electrolyte: A pathway to suppress Mn dissolution,” ACS Appl. Mater. Interfaces, 15, 35664 (2023).

*[619] N. S. Luu, P. E. Meza, A. M. Tayamen, O. Kahvecioglu, S. V. Rangnekar, J. Hui, J. R. Downing, and M. C. Hersam, “Enabling ambient stability of LiNiO2 lithium-ion battery cathode materials via graphene-cellulose composite coatings,” Chem. Mater., 35, 5150 (2023).

*[618] M.-K. Song, J.-H. Kang, X. Zhang, W. Ji, A. Ascoli, I. Messaris, A. S. Demirkol, B. Dong, S. Aggarwal, W. Wan, S.-M. Hong, S. G. Cardwell, I. Boybat, J.-S. Seo, J.-S. Lee, M. Lanza, H. Yeon, M. Onen, J. Li, B. Yildiz, J. A. del Alamo, S. Kim, S. Choi, G. Milano, C. Ricciardi, L. Alff, Y. Chai, Z. Wang, H. Bhaskaran, M. C. Hersam, D. Strukov, H.-S. P. Wong, I. Valov, B. Gao, H. Wu, R. Tetzlaff, A. Sebastian, W. Lu, L. Chua, J. J. Yang, and J. Kim, “Recent advances and future prospects for memristive materials, devices, and systems,” ACS Nano, 17, 11994 (2023).

[617] E. Trippodo, V. Campisciano, L.-W. Feng, Y. Chen, W. Huang, J. M. Alzola, D. Zheng, V. K. Sangwan, M. C. Hersam, M. R. Wasielewski, B. Pignataro, F. Giacalone, T. J. Marks, and A. Facchetti, “Air-stable ternary organic solar cells achieved by using fullerene additives in non-fullerene acceptor-polymer donor blends,” J. Mater. Chem. C, 11, 8074 (2023).

[616] J. R. Downing, S. Diaz-Arauzo, L. E. Chaney, D. Tsai, J. Hui, J.-W. T. Seo, D. R. Cohen, M. Dango, J. Zhang, N. X. Williams, J. H. Qian, J. B. Dunn, and M. C. Hersam, “Centrifuge-free separation of solution-exfoliated 2D nanosheets via cross-flow filtration,” Adv. Mater., 35, 2212042 (2023).

[615] A. J. Baca, M. D. Garrison, L. Kuo, F. Xu, L. C. Baldwin, A. S. Hyla, M. R. Zachariah, and M. C. Hersam, “Enhanced decomposition kinetics of ammonium perchlorate-ethyl cellulose-molybdenum disulfide nanocomposites,” ACS Appl. Mater. Interfaces, 15, 26799 (2023).

[614] D. W. Burke, R. R. Dasari, V. K. Sangwan, A. K. Oanta, Z. Hirani, C. E. Pelkowski, Y. Tang, R. Li, D. C. Ralph, M. C. Hersam, S. Barlow, S. R. Marder, and W. R. Dichtel, “Synthesis, hole doping, and electrical properties of a semiconducting azatriangulene-based covalent organic framework,” J. Am. Chem. Soc., 145, 11969 (2023).

[613] A. Rawat, L. Clark, C. Zhang, J. Cavin, V. K. Sangwan, P. S. Toth, C. Janáky, R. Ananth, E. Goldfine, M. J. Bedzyk, E. A. Weiss, J. M. Rondinelli, M. C. Hersam, E. I. Meletis, and K. Rajeshwar, “Solution combustion synthesis and characterization of magnesium copper vanadates,” Inorg. Chem., 62, 8903 (2023).

[612] J. M. Cain, X. Yan, S. E. Liu, J. H. Qian, T. T. Zeng, V. K. Sangwan, M. C. Hersam, S. S. Chou, and T.-M. Lu, “Influence of surface adsorption on MoS2 memtransistor switching kinetics,” Appl. Phys. Lett., 122, 223502 (2023).

[611] P. A. Danoglidis, C. M. Thomas, M. E. Maglogianni, M. C. Hersam, and M. S. Konsta-Gdoutos, “Functionalized hexagonal boron nitride nanoplatelets for advanced cementitious nanocomposites,” Cement and Concrete Composites, 141, 105127 (2023).

[610] Y.-S. Lee, D. Lebedev, E. K. Qian, P. Lee, M. G. Kanatzidis, M. C. Hersam, and V. P. Dravid, “Understanding the dynamic liquid-assisted chemical vapor deposition growth of copper telluride and its low-temperature phase transition,” Cryst. Growth Des., 23, 3769 (2023).

[609] G. Berti, C. G. Torres-Castanedo, D. P. Goronzy, M. J. Bedzyk, M. C. Hersam, C. Kopas, J. Marshall, and M. Iavarone, “Scanning tunneling microscopy and spectroscopy characterization of Nb films for quantum applications,” Appl. Phys. Lett., 122, 192605 (2023).

[608] M. I. B. Utama, H. Zeng, T. Sadhukhan, A. Dasgupta, S. C. Gavin, R. Ananth, D. Lebedev, W. Wang, J.-S. Chen, K. Watanabe, T. Taniguchi, T. J. Marks, X. Ma, E. A. Weiss, G. C. Schatz, N. P. Stern, and M. C. Hersam, “Chemomechanical modification of quantum emission in monolayer WSe2,” Nature Communications, 14, 2193 (2023).

[607] M. Salanne, J. M. Buriak, X. Chen, W. Chueh, M. C. Hersam, and R. E. Schaak, “Best practices for simulations and calculations of nanomaterials for energy applications: Avoiding ‘garbage in, garbage out’,” ACS Nano, 17, 5147 (2023).

[606] J. M. Buriak, D. Akinwande, N. Artzi, C. J. Brinker, C. Burrows, W. C. W. Chan, C. Chen, X. Chen, L. Chi, M. Chhowalla, W. Chueh, C. M. Crudden, D. Di Carlo, S. C. Glotzer, M. C. Hersam, D. Ho, T. Y. Hu, J. Huang, A. Javey, P. V. Kamat, I.-D. Kim, N. A. Kotov, R. T. Lee, Y. H. Lee, Y. Li, L. M. Liz-Marzán, P. Mulvaney, P. Narang, P. Nordlander, R. Oklu, W. J. Parak, M. Salanne, P. Samorì, R. E. Schaak, K. S. Schanze, T. Sekitani, S. Skrabalak, A. K. Sood, I. K. Voets, S. Wang, S. Wang, A. T. S. Wee, and J. Ye, “Best practices for using AI when writing scientific manuscripts,” ACS Nano, 17, 4091 (2023).

[605] D. Lebedev, J. T. Gish, E. S. Garvey, T. K. Stanev, J. Choi, L. Georgopoulos, T. W. Song, H. Y. Park, K. Watanabe, T. Taniguchi, N. P. Stern, V. K. Sangwan, and M. C. Hersam, “Electrical interrogation of thickness-dependent multiferroic phase transitions in the 2D antiferromagnetic semiconductor NiI2,” Adv. Funct. Mater., 33, 2212568 (2023).

[604] J. Nelson, T. K. Stanev, D. Lebedev, T. LaMountain, J. T. Gish, H. Zeng, H. Shin, O. Heinonen, K. Watanabe, T. Taniguchi, M. C. Hersam, and N. P. Stern, “Layer-dependent optically induced spin polarization in InSe,” Phys. Rev. B, 107, 115304 (2023).

[603] M. Shams, L. M. Guiney, M. Ramesh, M. C. Hersam, and I. Chowdhury, “Effects of sunlight on the fate of graphene oxide and reduced graphene oxide nanomaterials in the natural surface water,” Sci. Total Environ., 874, 162427 (2023).

*[602] M. Shams, N. Mansukhani, M. C. Hersam, D. Bouchard, and I. Chowdhury, “Environmentally sustainable implementations of two-dimensional nanomaterials,” Front. Chem., 11, 1132233 (2023).

[601] S. Jiang, D. Lebedev, L. Andrews, J. T. Gish, T. W. Song, M. C. Hersam, and O. Balogun, “Quantitative characterization of the anisotropic thermal properties of encapsulated two-dimensional MoS2 nanofilms,” ACS Appl. Mater. Interfaces, 15, 10123 (2023).

[600] D. D. Xu, A. F. Vong, D. Lebedev, R. Ananth, A. M. Wong, P. T. Brown, M. C. Hersam, C. A. Mirkin, and E. A. Weiss, “Conversion of classical light emission from a nanoparticle-strained WSe2 monolayer into quantum light emission via electron beam irradiation,” Adv. Mater., 35, 2208066 (2023).

[599] L. Gamba, Z. T. Johnson, J. Atterberg, S. Diaz-Arauzo, J. R. Downing, J. C. Claussen, M. C. Hersam, and E. B. Secor, “Systematic design of a graphene ink formulation for aerosol jet printing,” ACS Appl. Mater. Interfaces, 15, 3325 (2023).

2022

[598] L. Kuo, B. J. Luijten, S. Li, A. C. M. de Moraes, A. J. Silvaroli, S. G. Wallace, J. Hui, J. R. Downing, K. R. Shull, and M. C. Hersam, “Sterilizable and reusable UV-resistant graphene-polyurethane elastomer composites,” ACS Appl. Mater. Interfaces, 14, 53241 (2022).

*[597] V. K. Sangwan, S. E. Liu, A. R. Trivedi, and M. C. Hersam, “Two-dimensional materials for bio-realistic neuronal computing networks,“ Matter, 5, 4133 (2022).

*#[596] X. Yan, J. H. Qian, V. K. Sangwan, and M. C. Hersam, “Progress and challenges for memtransistors in neuromorphic circuits and systems,” Adv. Mater., 34, 2108025 (2022).

*[595] A. D. Franklin, M. C. Hersam, and H.-S. P. Wong, “Carbon nanotube transistors: Making electronics from molecules,” Science, 378, 726 (2022).

[594] K. M. Ryan, C. G. Torres-Castanedo, D. P. Goronzy, D. A. Garcia Wetten, M. Field, C. J. Kopas, J. Marshall, M. J. Reagor, M. J. Bedzyk, M. C. Hersam, and V. Chandrasekhar, “Characterization of Nb films for superconducting qubits using phase boundary measurements,” Appl. Phys. Lett., 121, 202601 (2022).

*[593] M. Schwinn, S. Rafiq, C. Lee, M. P. Bland, T. W. Song, V. K. Sangwan, M. C. Hersam, and L. X. Chen, “Charge transfer dynamics and interlayer exciton formation in MoS2/VOPc mixed dimensional heterojunction,” J. Chem. Phys., 157, 184701 (2022).

[592] K.-Y. Park, M. E. Sweers, U. Berner, E. Hirth, J. R. Downing, J. Hui, J. Mailoa, C. Johnston, S. Kim, L. C. Seitz, and M. C. Hersam, “Mitigating Pt loss in polymer electrolyte membrane fuel cell cathode catalysts using graphene nanoplatelet Pickering emulsion processing,” Adv. Funct. Mater., 32, 2205216 (2022).

*[591] C. M. Smyth, J. M. Cain, E. J. Lang, P. Lu, X. Yan, S. E. Liu, J. Yuan, M. P. Bland, N. J. Madden, T. Ohta, V. K. Sangwan, M. C. Hersam, K. Hattar, S. S. Chou, and T.-M. Lu, “Resilience of monolayer MoS2 memtransistors under heavy ion irradiation,” J. Mater. Res., 37, 2723 (2022).

[590] A. A. Murthy, P. Masih Das, S. M. Ribet, C. Kopas, J. Lee, M. J. Reagor, L. Zhou, M. J. Kramer, M. C. Hersam, M. Checchin, A. Grassellino, R. dos Reis, V. P. Dravid, and A. Romanenko, “Developing a chemical and structural understanding of the surface oxide in a niobium superconducting qubit,” ACS Nano, 16, 17257 (2022).

[589] J.-S. Chen, A. Dasgupta, D. J. Morrow, R. Emmanuele, T. J. Marks, M. C. Hersam, and X. Ma, “Room temperature lasing from semiconducting single-walled carbon nanotubes,” ACS Nano, 16, 16776 (2022).

[588] L. Kuo, V. K. Sangwan, S. V. Rangnekar, T.-C. Chu, D. Lam, Z. Zhu, L. J. Richter, R. Li, B. M. Szydłowska, J. R. Downing, B. J. Luijten, L. J. Lauhon, and M. C. Hersam, “All-printed ultrahigh-responsivity MoS2 nanosheet photodetectors enabled by megasonic exfoliation,” Adv. Mater., 34, 2203772 (2022).

[587] C. T. Eckdahl, C. Ou, S. Padgaonkar, M. C. Hersam, E. A. Weiss, and J. A. Kalow, “Back electron transfer rates determine the photoreactivity of donor-acceptor stilbene complexes in a macrocyclic host,” Org. Biomol. Chem., 20, 6201 (2022).

[586] L. Rahimifard, A. Shylendra, S. Nasrin, S. E. Liu, V. K. Sangwan, M. C. Hersam, and A. R. Trivedi, “Higher order neural processing with input-adaptive dynamic weights on MoS2 memtransistor crossbars,” Front. Electron. Mater., 2, 950487 (2022).

[585] M. A. Shehzad, Y.-S. Lee, M. Cheng, D. Lebedev, A. C. Tyner, P. Masih Das, Z. Gao, P. Goswami, R. dos Reis, M. C. Hersam, X. Chen, and V. P. Dravid, “Vapor-liquid assisted chemical vapor deposition of Cu2X materials,” 2D Materials, 9, 045013 (2022).

[584] D. Lam, D. Lebedev, L. Kuo, V. K. Sangwan, B. M. Szydłowska, F. Ferraresi, A. Söll, Z. Sofer, and M. C. Hersam, “Liquid-phase exfoliation of magnetically and optoelectronically active ruthenium trichloride nanosheets,” ACS Nano, 16, 11315 (2022).

[583] J. M. Buriak, W. C. W. Chan, X. Chen, M. C. Hersam, L. M. Liz-Marzán, and P. S. Weiss, “The 2022 Kavli prize in nanoscience: Self-assembled monolayers,” ACS Nano, 16, 9965 (2022).

[582] W. J. Hyun, C. M. Thomas, L. E. Chaney, A. C. M. de Moraes, and M. C. Hersam, “Screen-printable hexagonal boron nitride ionogel electrolytes for mechanically deformable solid-state lithium-ion batteries,” Nano Lett., 22, 5372 (2022).

*[581] K. Lee, X. Duan, M. C. Hersam, and J. Kim, “Fundamentals and applications of mixed-dimensional heterostructures,” APL Mater., 10, 060402 (2022).

[580] C. Wang, L. Peng, S. A. Wells, J. D. Cain, Y.-K. Huang, L. A. Rhoads, V. P. Dravid, M. C. Hersam, and M. A. Grayson, “Field-effect conductivity scaling for two-dimensional materials with tunable impurity density,” 2D Materials, 9, 031002 (2022).

*[579] C. C. Pola, S. V. Rangnekar, R. Sheets, B. M. Szydlowska, J. R. Downing, K. W. Parate, S. G. Wallace, D. Tsai, M. C. Hersam, C. L. Gomes, and J. C. Claussen, “Aerosol-jet-printed graphene electrochemical immunosensors for rapid and label-free detection of SARS-CoV-2 in saliva,” 2D Materials, 9, 035016 (2022).

[578] S. G. Wallace, N. P. Bradshaw, N. X. Williams, J. H. Qian, K. W. Putz, C. E. Tabor, and M. C. Hersam, “Combustion-assisted photonic sintering of printed liquid metal nanoparticle films,” Adv. Mater. Technol., 7, 2101178 (2022).

[577] X. Lu, D. P. Goronzy, C. G. Torres-Castanedo, P. Masih Das, M. Kazemzadeh-Atoufi, A. McFadden, C. R. H. McRae, P. W. Voorhees, V. P. Dravid, M. J. Bedzyk, M. C. Hersam, and J. M. Rondinelli, “Stability, metallicity, and magnetism in niobium silicide nanofilms,” Phys. Rev. Mater., 6, 064402 (2022).

*#[576] N. S. Luu, K.-Y. Park, and M. C. Hersam, “Characterizing and mitigating chemomechanical degradation in high-energy lithium-ion battery cathode materials,” Acc. Mater. Res., 3, 511 (2022).

*[575] D. Lam, D. Lebedev, and M. C. Hersam, “Morphotaxy of layered van der Waals materials,” ACS Nano, 16, 7144 (2022).

[574] E. Schwenker, V. S. C. Kolluru, J. Guo, R. Zhang, X. Hu, Q. Li, J. T. Paul, M. C. Hersam, V. P. Dravid, R. Klie, J. R. Guest, and M. K. Y. Chan, “Ingrained: An automated framework for fusing atomic-scale image simulations into experiments,” Small, 18, 2102960 (2022).

[573] N. A. Kotov, D. Akinwande, C. J. Brinker, J. M. Buriak, W. C. W. Chan, X. Chen, M. Chhowalla, W. Chueh, S. C. Glotzer, Y. Gogotsi, M. C. Hersam, D. Ho, T. Hu, A. Javey, C. R. Kagan, K. Kataoka, I.-D. Kim, S.-T. Lee, Y. H. Lee, L. M. Liz-Marzán, J. E. Millstone, P. Mulvaney, A. E. Nel, P. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, M. Salanne, R. E. Schaak, A. K. Sood, M. Stevens, V. Tsukruk, A. T. S. Wee, I. Voets, T. Weil, and P. S. Weiss, “Tanks and truth,” ACS Nano, 16, 4975 (2022).

*[572] C. M. Thomas, W. J. Hyun, H. C. Huang, D. Zeng, and M. C. Hersam, “Blade-coatable hexagonal boron nitride ionogel electrolytes for scalable production of lithium metal batteries,” ACS Energy Lett., 7, 1558 (2022).

[571] S. G. Wallace, M. C. Brothers, Z. E. Brooks, S. V. Rangnekar, D. Lam, M. J. St. Lawrence, W. A. Gaviria Rojas, K. W. Putz, S. S. Kim, and M. C. Hersam, “Fully printed and flexible multi-material electrochemical aptasensor platform enabled by selective graphene biofunctionalization,” Eng. Res. Express, 4, 015037 (2022).

*[570] X. Liu, M. S. Rahn, Q. Ruan, B. I. Yakobson, and M. C. Hersam, “Probing borophene oxidation at the atomic scale,” Nanotechnology, 33, 235702 (2022).

#[569] D. C. Moore, A. Jawaid, R. Busch, M. Brothers, P. Miesle, A. Miesle, R. Rao, J. Lee, L. K. Beagle, M. Motala, S. G. Wallace, J. R. Downing, A. Roy, C. Muratore, M. C. Hersam, R. Vaia, S. Kim, and N. R. Glavin, “Ultrasensitive molecular sensors based on real-time impedance spectroscopy in solution-processed 2D materials,” Adv. Funct. Mater., 32, 2106830 (2022).

*[568] R. R. Tafoya, M. A. Gallegos, J. R. Downing, L. Gamba, B. Kaehr, E. N. Coker, M. C. Hersam, and E. B. Secor, “Morphology and electrical properties of high-speed flexography-printed graphene,” Microchim. Acta, 189, 123 (2022).

[567] G. Li, L.-W. Feng, S. Mukherjee, L. O. Jones, R. M. Jacobberger, W. Huang, R. M. Young, R. M. Pankow, W. Zhu, N. Lu, K. L. Kohlstedt, V. K. Sangwan, M. R. Wasielewski, M. C. Hersam, G. C. Schatz, D. M. DeLongchamp, A. Facchetti, and T. J. Marks, “Non-fullerene acceptors with direct and indirect hexa-fluorination afford >17% efficiency in polymer solar cells,” Energy Environ. Sci., 15, 645 (2022).

[566] S.-E. Kim, J.-G. Lee, L. Ling, S. E. Liu, H.-K. Lim, V. K. Sangwan, M. C. Hersam, and H.-S. Lee, “Sodium-doped titania self-rectifying memristors for crossbar array neuromorphic architectures,” Adv. Mater., 34, 2106913 (2022).

[565] S.-M. Kim, S. Kim, L. Ling, S. E. Liu, S. Jin, Y. M. Jung, M. Kim, H.-H. Park, V. K. Sangwan, M. C. Hersam, and H.-S. Lee, “Linear and symmetric Li-based composite memristors for efficient supervised learning,” ACS Appl. Mater. Interfaces, 14, 5673 (2022).

*#[564] K.-Y. Park, Y. Zhu, C. G. Torres-Castanedo, H. J. Jung, N. S. Luu, O. Kahvecioglu, Y. Yoo, J.-W. T. Seo, J. R. Downing, H.-D. Lim, M. J. Bedzyk, C. Wolverton, and M. C. Hersam, “Elucidating and mitigating high-voltage degradation cascades in cobalt-free LiNiO2 lithium-ion battery cathodes,” Adv. Mater., 34, 2106402 (2022).

*[563] J. Chen, H. Pu, M. C. Hersam, and P. Westerhoff, “Molecular engineering of 2D nanomaterial field-effect transistor sensors: Fundamentals and translation across the innovation spectrum,” Adv. Mater., 34, 2106975 (2022).

[562] X. Zhang, G. Li, S. Mukherjee, W. Huang, D. Zheng, L.-W. Feng, Y. Chen, J. Wu, V. K. Sangwan, M. C. Hersam, J. Yu, A. Facchetti, and T. J. Marks, “Systematically controlling acceptor fluorination optimizes hierarchical morphology, vertical phase separation, and efficiency in non-fullerene organic solar cells,” Adv. Energy Mater., 12, 2102172 (2022).

[561] X. Liu, Q. Li, Q. Ruan, M. S. Rahn, B. I. Yakobson, and M. C. Hersam, “Borophene synthesis beyond the single-atomic-layer limit,” Nature Materials, 21, 35 (2022).

[560] A. R. Naik, Y. Zhou, A. A. Dey, D. L. Gonzalez Arellano, U. Okoroanyanwu, E. B. Secor, M. C. Hersam, J. Morse, J. P. Rothstein, K. R. Carter, and J. J. Watkins, “Printed microfluidic sweat sensing platform for cortisol and glucose detection,” Lab Chip, 22, 156 (2022).

2021

[559] V. K. Sangwan, S. V. Rangnekar, J. Kang, J. Shen, H.-S. Lee, D. Lam, J. Shen, X. Liu, A. C. M. de Moraes, L. Kuo, J. Gu, H. Wang, and M. C. Hersam, “Visualizing thermally activated memristive switching in percolating networks of solution-processed 2D semiconductors,” Adv. Funct. Mater., 31, 2107385 (2021).

[558] M. D. Garrison, S. G. Wallace, L. C. Baldwin, Z. Guo, L. Kuo, J. E. Estevez, A. L. Briseno, M. C. Hersam, and A. J. Baca, “Accelerated decomposition kinetics of ammonium perchlorate via conformal graphene coating,” Chem. Mater., 33, 9608 (2021).

[557] Y. Wang, M. E. Ziebel, L. Sun, J. T. Gish, T. J. Pearson, X.-Z. Lu, A. E. Thorarinsdottir, M. C. Hersam, J. R. Long, D. E. Freedman, J. M. Rondinelli, D. Puggioni, and T. D. Harris, “Strong magnetocrystalline anisotropy arising from metal-ligand covalency in a metal-organic candidate for 2D magnetic order,” Chem. Mater., 33, 8712 (2021).

[556] N. S. Luu, J.-M. Lim, C. G. Torres-Castanedo, K.-Y. Park, E. Moazzen, K. He, P. E. Meza, W. Li, J. R. Downing, X. Hu, V. P. Dravid, S. A. Barnett, M. J. Bedzyk, and M. C. Hersam, “Elucidating and mitigating high-voltage interfacial chemomechanical degradation of nickel-rich lithium-ion battery cathodes via conformal graphene coating,” ACS Appl. Energy Mater., 4, 11069 (2021).

[555] X. Sui, J. R. Downing, M. C. Hersam, and J. Chen, “Additive manufacturing and applications of nanomaterial-based sensors,” Materials Today, 48, 135 (2021).

[554] S. H. Amsterdam, T. K. Stanev, L. Wang, Q. Zhou, S. Irgen-Gioro, S. Padgaonkar, A. A. Murthy, V. K. Sangwan, V. P. Dravid, E. A. Weiss, P. Darancet, M. K. Y. Chan, M. C. Hersam, N. P. Stern, and T. J. Marks, “Mechanistic investigation of molybdenum disulfide defect photoluminescence quenching by adsorbed metallophthalocyanines,” J. Am. Chem. Soc., 143, 17153 (2021).

#[553] L. Li, J. F. Schultz, S. Mahapatra, X. Liu, C. Shaw, X. Zhang, M. C. Hersam, and N. Jiang, “Angstrom-scale spectroscopic visualization of interfacial interactions in an organic/borophene vertical heterostructure,” J. Am. Chem. Soc., 143, 15624 (2021).

[552] R. Hanus, S. V. Rangnekar, S. Mollah, K. Hussain, N. Hines, E. Heller, M. C. Hersam, A. Khan, and S. Graham, “Thermoreflectance imaging of (ultra)wide band-gap devices with MoS2 enhancement coatings,” ACS Appl. Mater. Interfaces, 13, 42195 (2021).

[551] W. A. Gaviria Rojas, M. E. Beck, V. K. Sangwan, S. Guo, and M. C. Hersam, “Ohmic-contact-gated carbon nanotube transistors for high-performance analog amplifiers,” Adv. Mater., 33, 2100994 (2021).

[550] Z. Hu, N. P. Bradshaw, B. Vanthournout, C. Forman, K. Gnanasekaran, M. P. Thompson, P. Smeets, A. Dhinojwala, M. D. Shawkey, M. C. Hersam, and N. C. Gianneschi, “Non-iridescent structural color control via inkjet printing of self-assembled synthetic melanin nanoparticles,” Chem. Mater., 33, 6433 (2021).

[549] A. M. Evans, A. Giri, V. K. Sangwan, S. Xun, M. Bartnof, C. G. Torres-Castanedo, H. B. Balch, M. S. Rahn, N. P. Bradshaw, E. Vitaku, D. W. Burke, H. Li, M. J. Bedzyk, F. Wang, J.-L. Bredas, J. A. Malen, A. J. H. McGaughey, M. C. Hersam, W. R. Dichtel, and P. E. Hopkins, “Thermally conductive ultra-low-k dielectric layers based on two-dimensional covalent organic frameworks,” Nature Materials, 20, 1142 (2021).

[548] J. Yuan, S. E. Liu, A. Shylendra, W. A. Gaviria Rojas, S. Guo, H. Bergeron, S. Li, H.-S. Lee, S. Nasrin, V. K. Sangwan, A. R. Trivedi, and M. C. Hersam, “Reconfigurable MoS2 memtransistors for continuous learning in spiking neural networks,” Nano Lett., 21, 6432 (2021).

[547] T. LaMountain, J. Nelson, E. J. Lenferink, S. H. Amsterdam, A. A. Murthy, H. Zeng, T. J. Marks, V. P. Dravid, M. C. Hersam, and N. P. Stern, “Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor,” Nature Communications, 12, 4530 (2021).

*[546] S. Padgaonkar, P. T. Brown, Y. Jeong, C. Cherqui, K. N. Avanaki, R. López-Arteaga, S. Irgen-Gioro, Y. Wu, V. K. Sangwan, G. C. Schatz, M. C. Hersam, and E. A. Weiss, “Mechanism of long-range energy transfer from quantum dots to black phosphorus,” J. Phys. Chem. C, 125, 15458 (2021).

[545] J. Li, L. M. Guiney, J. R. Downing, X. Wang, C. H. Chang, J. Jiang, Q. Liu, X. Liu, K.-C. Mei, Y.-P. Liao, T. Ma, H. Meng, M. C. Hersam, A. E. Nel, and T. Xia, “Dissolution of 2D molybdenum disulfide generates differential toxicity among liver cell types compared to non-toxic 2D boron nitride effects,” Small, 17, 2101084 (2021).

[544] J. T. Gish, D. Lebedev, T. K. Stanev, S. Jiang, L. Georgopoulos, T. W. Song, G. Lim, E. S. Garvey, L. Valdman, O. Balogun, Z. Sofer, V. K. Sangwan, N. P. Stern, and M. C. Hersam, “Ambient-stable two-dimensional CrI3 via organic-inorganic encapsulation,” ACS Nano, 15, 10659 (2021).

[543] Y. Xu, K. Wang, Z. Yao, J. Kang, D. Lam, D. Yang, W. Ai, C. Wolverton, M. C. Hersam, Y. Huang, W. Huang, V. P. Dravid, and J. Wu, “In-situ, atomic-resolution observation of lithiation and sodiation of WS2 nanoflakes: Implications for lithium-ion and sodium-ion batteries,” Small, 17, 2100637 (2021).

[542] S. Arpaci, V. Lopez-Dominguez, J. Shi, L. Sánchez-Tejerina, F. Garesci, C. Wang, X. Yan, V. K. Sangwan, M. A. Grayson, M. C. Hersam, G. Finocchio, and P. Khalili Amiri, “Observation of current-induced switching in non-collinear antiferromagnetic IrMn3 by differential voltage measurements,” Nature Communications, 12, 3828 (2021).

[541] L. Stegbauer, P. J. M. Smeets, R. Free, S. G. Wallace, M. C. Hersam, E. E. Alp, and D. Joester, “Persistent polyamorphism in the chiton tooth: From a new biomineral to inks for additive manufacturing,” Proc. Nat. Acad. Sci. USA, 118, e2020160118 (2021).

*[540] S. H. Amsterdam, T. J. Marks, and M. C. Hersam, “Leveraging molecular properties to tailor mixed-dimensional heterostructures beyond energy level alignment,” J. Phys. Chem. Lett., 12, 4543 (2021).

[539] Q. Li, X. Liu, E. B. Aklile, S. Li, and M. C. Hersam, “Self-assembled borophene/graphene nanoribbon mixed-dimensional heterostructures,” Nano Lett., 21, 4029 (2021).

[538] I. Spanopoulos, I. Hadar, W. Ke, P. Guo, E. M. Mozur, E. Morgan, S. Wang, D. Zheng, S. Padgaonkar, G. N. M. Reddy, E. A. Weiss, M. C. Hersam, R. Seshadri, R. D. Schaller, and M. G. Kanatzidis, “Tunable broad light emission from 3D hollow bromide perovskites through defect engineering,” J. Am. Chem. Soc., 143, 7069 (2021).

[537] S. M. Islam, V. K. Sangwan, D. B. Buchholz, S. A. Wells, L. Peng, L. Zeng, Y. He, M. C. Hersam, J. B. Ketterson, T. J. Marks, M. J. Bedzyk, M. Grayson, and M. G. Kanatzidis, “Amorphous to crystal phase change memory effect with two-fold bandgap difference in semiconducting K2Bi8Se13,” J. Am. Chem. Soc., 143, 6221 (2021).

[536] G. Li, X. Zhang, L. O. Jones, J. M. Alzola, S. Mukherjee, L.-W. Feng,  W. Zhu, C. L. Stern, W. Huang, J. Yu, V. K. Sangwan, D. M. DeLongchamp, K. L. Kohlstedt, M. R. Wasielewski, M. C. Hersam, G. C. Schatz, A. Facchetti, and T. J. Marks, “Systematic merging of non-fullerene acceptor π-extension and tetrafluorination strategies affords polymer solar cells with > 16% efficiency,” J. Am. Chem. Soc., 143, 6123 (2021).

[535] C. Backes, R. K. Behera, A. Bellamy-Carter, A. Bianco, V. Caps, C. Casiraghi, M. Chhowalla, A. Criado, T. Davies, A. C. Ferrari, S. Fornasaro, F. Galembeck, S. Goldie, M. C. Hersam, A. R. Kamali, V. Kolosov, V. Kumar, W. H. Lee, N. Martsinovich, M. Melchionna, M. Melucci, A. Molle, H. Morgan, C. Neumann, T. Nowack, A. Oyarzun, V. Palermo, G. S. Papanai, M. Prato, Y. Shin, R. Sui, I. F. Teixeira, G. Wang, and Z. Xia, “3-Dimensional graphene-like structures and applications: General discussion,” Faraday Discussions, 227, 359 (2021).

[534] C. Backes, A. Bianco, C. Casiraghi, F. Galembeck, R. K. Gupta, M. C. Hersam, A. R. Kamali, M. Kolíbal, V. Kolosov, V. Kumar, W. H. Lee, N. Martsinovich, M. Melchionna, K. Müllen, A. Oyarzun, V. Palermo, M. Prato, P. Samori, S. Sampath, A. Silvestri, D. Sirbu, R. Sui, A. Turchanin, C. Wetzl, I. A. Wright, Z. Xia, and X. Zhuang, “2D Materials production and generation of functional inks: General discussion,” Faraday Discussions, 227, 141 (2021).

*[533] W. J. Hyun, L. E. Chaney, J. R. Downing, A. C. M. de Moraes, and M. C. Hersam, “Printable hexagonal boron nitride ionogels,” Faraday Discussions, 227, 92 (2021).

[532] W. J. Hyun, C. M. Thomas, N. S. Luu, and M. C. Hersam, “Layered heterostructure ionogel electrolytes for high-performance solid-state lithium-ion batteries,” Adv. Mater., 33, 2007864 (2021).

*[531] V. K. Sangwan, J. Kang, D. Lam, J. T. Gish, S. A. Wells, J. Luxa, J. P. Male, G. J. Snyder, Z. Sofer, and M. C. Hersam, “Intrinsic carrier multiplication in layered Bi2O2Se avalanche photodiodes with gain bandwidth product exceeding 1 GHz,” Nano Research, 14, 1961 (2021).

#[530] Q. Li, V. S. C. Kolluru, M. S. Rahn, E. Schwenker, S. Li, R. G. Hennig, P. Darancet, M. K. Y. Chan, and M. C. Hersam, “Synthesis of borophane polymorphs through hydrogenation of borophene,” Science, 371, 1143 (2021).

*[529] H. Bergeron, D. Lebedev, and M. C. Hersam, “Polymorphism in post-dichalcogenide two-dimensional materials,” Chem. Rev., 121, 2713 (2021).

[528] K.-C. Wang, D. Valencia, J. Charles, A. Henning, M. E. Beck, V. K. Sangwan, L. J. Lauhon, M. C. Hersam, and T. Kubis, “Atomic-level charge transport mechanism in gate-tunable anti-ambipolar van der Waals heterojunctions,” Appl. Phys. Lett., 118, 083103 (2021).

[527] A. Rai, V. K. Sangwan, J. T. Gish, M. C. Hersam, and D. G. Cahill, “Anisotropic thermal conductivity of layered indium selenide,” Appl. Phys. Lett., 118, 073101 (2021).

[526] N. Su, R. Ma, G. Li, T. Liu, L.-W. Feng, C. Lin, J. Chen, J. Song, Y. Xiao, J. Qu, X. Lu, V. K. Sangwan, M. C. Hersam, H. Yan, A. Facchetti, and T. J. Marks, “High-efficiency all-polymer solar cells with poly-small-molecule acceptors having π-extended units with broad near-infrared absorption,” ACS Energy Lett., 6, 728 (2021).

[525] X. Liu, L. Wang, B. I. Yakobson, and M. C. Hersam, “Nanoscale probing of image-potential states and electron transfer doping in borophene polymorphs,” Nano Lett., 21, 1169 (2021).

[524] S. Padgaonkar, C. T. Eckdahl, J. K. Sowa, R. López-Arteaga, D. E. Westmoreland, E. F. Woods, S. Irgen-Gioro, B. Nagasing, T. Seideman, M. C. Hersam, J. A. Kalow, and E. A. Weiss, “Light-triggered switching of quantum dot photoluminescence through excited-state electron transfer to surface-bound photochromic molecules,” Nano Lett., 21, 854 (2021).

#[523] J. Li, X. Wang, K.-C. Mei, C. H. Chang, J. Jiang, X. Liu, Q. Liu, L. M. Guiney, M. C. Hersam, Y.-P. Liao, H. Meng, and T. Xia, “Lateral size of graphene oxide determines differential cellular uptake and cell death pathways in Kupffer cells, LSECs, and hepatocytes,” Nano Today, 37, 101061 (2021).

[522] S. H. Amsterdam, T. LaMountain, T. K. Stanev, V. K. Sangwan, R. López-Arteaga, S. Padgaonkar, K. Watanabe, T. Taniguchi, E. A. Weiss, T. J. Marks, M. C. Hersam, and N. P. Stern, “Tailoring the optical response of pentacene thin films via templated growth on hexagonal boron nitride,” J. Phys. Chem. Lett., 12, 26 (2021).

[521] C. J. Brinker, J. M. Buriak, W. C. W. Chan, M. Chhowalla, S. Glotzer, Y. Gogotsi, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, K. Kataoka, A. Khademhosseini, I.-D. Kim, N. A. Kotov, S.-T. Lee, Y. H. Lee, Y. Li, L. M. Liz-Marzán, J. E. Millstone, P. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, A. K. Sood, M. M. Stevens, A. T. S. Wee, T. Weil, C. G. Willson, and P. S. Weiss, “Growing contributions of nano in 2020,” ACS Nano, 14, 16163 (2020).

[520] R. R. Tafoya, A. W. Cook, B. Kaehr, J. R. Downing, M. C. Hersam, and E. B. Secor, “Real-time optical process monitoring for structure and property control of aerosol jet printed functional materials,” Adv. Mater. Technol., 5, 2000781 (2020).

*[519] J.-M. Lim, N. S. Luu, K.-Y. Park, M. T. Z. Tan, S. Kim, J. R. Downing, K. He, V. P. Dravid, and M. C. Hersam, “Enhancing nanostructured nickel-rich lithium-ion battery cathodes via surface stabilization,” J. Vac. Sci. Technol. A, 38, 063210 (2020).

[518] Y. Lin, M. Wood, K. Imasato, J. J. Kuo, D. Lam, A. N. Mortazavi, T. J. Slade, S. A. Hodge, K. Xi, M. G. Kanatzidis, D. R. Clarke, M. C. Hersam, and G. J. Snyder, “Expression of interfacial Seebeck coefficient through grain boundary engineering with multi-layer graphene nanoplatelets,” Energy Environ. Sci., 13, 4114 (2020).

*[517] S. J. Lou, S. Loser, K. A. Luck, N. Zhou, M. J. Leonardi, A. Timalsina, E. F. Manley, D. Hayes, J. Strzalka, M. C. Hersam, R. P. H. Chang, T. J. Marks, and L. X. Chen, “Charge generation mechanism tuned via film morphology in small molecule bulk-heterojunction photovoltaic materials,” J. Mater. Chem. C, 8, 15234 (2020).

*[516] A. C. M. de Moraes, J. Obrzut, V. K. Sangwan, J. R. Downing, L. E. Chaney, D. K. Patel, R. E. Elmquist, and M. C. Hersam, “Elucidating charge transport mechanisms in cellulose-stabilized graphene inks,” J. Mater. Chem. C, 8, 15086 (2020).

[515] H.-S. Lee, V. K. Sangwan, W. A. Gaviria Rojas, H. Bergeron, H. Y. Jeong, J. Yuan, K. Su, and M. C. Hersam, “Dual-gated MoS2 memtransistor crossbar array,” Adv. Funct. Mater., 30, 2003683 (2020).

[514] A. M. Evans, N. P. Bradshaw, B. Litchfield, M. J. Strauss, B. Seckman, M. R. Ryder, I. Castano, C. Gilmore, N. C. Gianneschi, C. R. Mulzer, M. C. Hersam, and W. R. Dichtel, “High-sensitivity acoustic molecular sensors based on large-area, spray-coated 2D covalent organic frameworks,” Adv. Mater., 32, 2004205 (2020).

*[513] H. Bergeron, L. M. Guiney, M. E. Beck, C. Zhang, V. K. Sangwan, C. G. Torres-Castanedo, J. T. Gish, R. Rao, D. R. Austin, S. Guo, D. Lam, K. Su, P. T. Brown, N. R. Glavin, B. Maruyama, M. J. Bedzyk, V. P. Dravid, and M. C. Hersam, “Large-area optoelectronic-grade InSe thin films via controlled phase evolution,” Appl. Phys. Rev., 7, 041402 (2020).

*[512] W. A. Gaviria Rojas and M. C. Hersam, “Chirality-enriched carbon nanotubes for next-generation computing,” Adv. Mater., 32, 1905654 (2020).

[511] W. Zhu, A. P. Spencer, S. Mukherjee, J. M. Alzola, V. K. Sangwan, S. H. Amsterdam, S. M. Swick, L. O. Jones, M. C. Heiber, A. A. Herzing, G. Li, C. L. Stern, D. M. DeLongchamp, K. L. Kohlstedt, M. C. Hersam, G. C. Schatz, M. R. Wasielewski, L. X. Chen, A. Facchetti, and T. J. Marks, “Crystallography, morphology, electronic structure, and transport in non-fullerene/non-indacenodithienothiophene polymer:Y6 solar cells,” J. Am. Chem. Soc., 142, 14532 (2020).

[510] A. E. Baumann, J. R. Downing, D. A. Burns, M. C. Hersam, and V. S. Thoi, “Graphene-metal-organic framework composite sulfur electrodes for Li-S batteries with high volumetric capacity,” ACS Appl. Mater. Interfaces, 12, 37173 (2020).

[509] W. J. Chang, K.-Y. Park, Y. Zhu, C. Wolverton, M. C. Hersam, and E. A. Weiss, “n-Doping of quantum dots by lithium ion intercalation,” ACS Appl. Mater. Interfaces, 12, 36523 (2020).

2020

*#[508] W. J. Hyun, C. M. Thomas, and M. C. Hersam, “Nanocomposite ionogel electrolytes for solid-state rechargeable batteries,” Adv. Energy Mater., 10, 2002135 (2020).

*[507] J.-M. Lim, S. Kim, N. S. Luu, J. R. Downing, M. T. Z. Tan, K.-Y. Park, J. C. Hechter, V. P. Dravid, K. He, and M. C. Hersam, “High volumetric energy and power density Li2TiSiO5 battery anodes via graphene functionalization,” Matter, 3, 522 (2020).

[506] V. K. Sangwan and M. C. Hersam, “Neuromorphic nanoelectronic materials,” Nature Nanotechnology, 15, 517 (2020).

#[505] K.-Y. Park, J.-M. Lim, N. S. Luu, J. R. Downing, S. G. Wallace, L. E. Chaney, H. Yoo, W. J. Hyun, H.-U. Kim, and M. C. Hersam, “Concurrently approaching volumetric and specific capacity limits of lithium battery cathodes via conformal Pickering emulsion graphene coatings,” Adv. Energy Mater., 10, 2001216 (2020).

[504] S. M. Swick, J. M. Azola, V. K. Sangwan, S. H. Amsterdam, W. Zhu, L. O. Jones, N. Powers-Riggs, A. Facchetti, K. L. Kohlstedt, G. C. Schatz, M. C. Hersam, M. R. Wasielewski, and T. J. Marks, “Fluorinating π-extended molecular acceptors yields highly connected crystal structures and low reorganization energies for efficient solar cells,” Adv. Energy Mater., 10, 2000635 (2020).

[503] M. E. Beck and M. C. Hersam, “Emerging opportunities for electrostatic control in atomically thin devices,” ACS Nano, 14, 6498 (2020).

[502] K. Parate, C. C. Pola, S. V. Rangnekar, D. L. Mendivelso-Perez, E. A. Smith, M. C. Hersam, C. L. Gomes, and J. C. Claussen, “Aerosol-jet-printed graphene electrochemical histamine sensors for food safety monitoring,” 2D Materials, 7, 034002 (2020).

[501] L.-W. Feng, J. Chen, S. Mukherjee, V. K. Sangwan, W. Huang, Y. Chen, D. Zheng, J. W. Strzalka, G. Wang, M. C. Hersam, D. DeLongchamp, A. Facchetti, and T. J. Marks, “Readily accessible benzo[d]thiazole polymers for nonfullerene solar cells with >16% efficiency and potential pitfalls,” ACS Energy Lett., 5, 1780 (2020).

[500] Y.-M. Fu, M.-C. Chou, C.-H. Kang, Y.-T. Cheng, G.-Y. Chen, P.-W. Wu, E. B. Secor, and M. C. Hersam, “An inkjet printing technique for scalable microfabrication of graphene-based sensor components,” IEEE Access, 8, 79338 (2020).

[499] C. Ma, S. Clark, Z. Liu, L. Liang, Y. Firdaus, R. Tao, A. Han, X. Liu, L.-J. Li, T. D. Anthopoulos, M. C. Hersam, and T. Wu, “Solution-processed mixed-dimensional hybrid perovskite/carbon nanotube electronics,” ACS Nano, 14, 3969 (2020).

#[498] S. Padgaonkar, J. N. Olding, L. J. Lauhon, M. C. Hersam, and E. A. Weiss, “Emergent optoelectronic properties of mixed-dimensional heterojunctions,” Acc. Chem. Res., 53, 763 (2020).

[497] M. E. Beck, A. Shylendra, V. K. Sangwan, S. Guo, W. A. Gaviria Rojas, H. Yoo, H. Bergeron, K. Su, A. R. Trivedi, and M. C. Hersam, “Spiking neurons from tunable Gaussian heterojunction transistors,” Nature Communications, 11, 1565 (2020).

[496] S. Li, C. Zhong, A. Henning, V. K. Sangwan, Q. Zhou, X. Liu, M. S. Rahn, S. A. Wells, H. Y. Park, J. Luxa, Z. Sofer, A. Facchetti, P. Darancet, T. J. Marks, L. J. Lauhon, E. A. Weiss, and M. C. Hersam, “Molecular-scale characterization of photoinduced charge separation in mixed-dimensional InSe-organic van der Waals heterostructures,”ACS Nano, 14, 3509 (2020).

[495] T. LaMountain, E. J. Lenferink, S. H. Amsterdam, M. C. Hersam, and N. P. Stern, “Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor,” Proc. of SPIE, 11282, 112820D (2020).

[494] K. Parate, S. V. Rangnekar, D. Jing, D. L. Mendivelso-Perez, S. Ding, E. B. Secor, E. A. Smith, J. M. Hostetter, M. C. Hersam, and J. C. Claussen, “Aerosol-jet-printed graphene immunosensor for label-free cytokine monitoring in serum,” ACS Appl. Mater. Interfaces, 12, 8592 (2020).

[493] A. C. M. de Moraes, W. J. Hyun, N. S. Luu, J.-M. Lim, K.-Y. Park, and M. C. Hersam, “Phase-inversion polymer composite separators based on hexagonal boron nitride nanosheets for high-temperature lithium-ion batteries,” ACS Appl. Mater. Interfaces, 12, 8107 (2020).

[492] L. Liu, Z. Zhang, X. Liu, X. Xuan, B. I. Yakobson, M. C. Hersam, and W. Guo, “Borophene concentric superlattices via self-assembly of twin boundaries,” Nano Lett., 20, 1315 (2020).

[491] Y. Choi, J.-H. Kim, C. Qian, J. Kang, M. C. Hersam, J.-H. Park, and J. H. Cho, “Gate-tunable synaptic dynamics of ferroelectric-coupled carbon-nanotube transistors,” ACS Appl. Mater. Interfaces, 12, 4707 (2020).

[490] S. Jhulki, A. M. Evans, X.-L. Hao, M. W. Cooper, C. H. Feriante, J. Leisen, H. Li, D. Lam, M. C. Hersam, S. Barlow, J.-L. Brédas, W. R. Dichtel, and S. R. Marder, “Humidity sensing through reversible isomerization of a covalent organic framework,” J. Am. Chem. Soc., 142, 783 (2020).

[489] I. Alam, L. M. Guiney, M. C. Hersam, and I. Chowdhury, “Pressure-driven water transport behavior and antifouling performance of two-dimensional nanomaterial laminated membranes,” J. Membrane Sci., 599, 117812 (2020).

[488] S. D. Story, S. Boggs, L. M. Guiney, M. Ramesh, M. C. Hersam, C. J. Brinker, and S. L. Walker, “Aggregation morphology of planar engineered nanomaterials,” J. Colloid Interface Sci., 561, 849 (2020).

2019

[487] V. K. Sangwan, J. Kang, and M. C. Hersam, “Thickness-dependent charge transport in exfoliated indium selenide vertical field-effect transistors,” Appl. Phys. Lett., 115, 243104 (2019).

[486] X. Liu and M. C. Hersam, “Borophene-graphene heterostructures,” Science Advances, 5, eaax6444 (2019)

*#[485] X. Liu and M. C. Hersam, “2D materials for quantum information science,” Nature Reviews Materials, 4, 669 (2019).

[484] A. C. M. de Moraes, W. J. Hyun, J.-W. T. Seo, J. R. Downing, J.-M. Lim, and M. C. Hersam, “Ion-conductive, viscosity-tunable hexagonal boron nitride nanosheet inks,” Adv. Funct. Mater., 29, 1902245 (2019).

[483] Z. Zhang, A. J. Mannix, X. Liu, Z. Hu, N. P. Guisinger, M. C. Hersam, and B. I. Yakobson, “Near-equilibrium growth from borophene edges on silver,” Science Advances, 5, eaax0246 (2019).

[482] W. J. Hyun, A. C. M. de Moraes, J.-M. Lim, J. R. Downing, K.-Y. Park, M. T. Z. Tan, and M. C. Hersam, “High-modulus hexagonal boron nitride nanoplatelet gel electrolytes for solid-state rechargeable lithium-ion batteries,” ACS Nano, 13, 9664 (2019).

[481] M. Shams, L. M. Guiney, L. Huang, M. Ramesh, X. Yang, M. C. Hersam, and I. Chowdhury, “Influence of functional groups on the degradation of graphene oxide nanomaterials,” Environ. Sci. Nano, 6, 2203 (2019).

[480] D. Nguyen, G. Kang, M. C. Hersam, G. C. Schatz, and R. P. Van Duyne, “Molecular-scale mechanistic investigation of oxygen dissociation and adsorption on metal surface-supported cobalt phthalocyanine,” J. Phys. Chem. Lett., 10, 3966 (2019).

[479] A. J. Mannix, T. Saari, B. Kiraly, B. L. Fisher, C.-H. Hsu, Z.-Q. Huang, F.-C. Chuang, J. Nieminen, H. Lin, A. Bansil, M. C. Hersam, and N. P. Guisinger, “Edge states in the honeycomb reconstruction of two-dimensional silicon nanosheets,” Appl. Phys. Lett., 115, 023102 (2019).

[478] S. Zhao, F. Caruso, L. Dähne, G. Decher, B. G. De Geest, J. Fan, N. Feliu, Y. Gogotsi, P. T. Hammond, M. C. Hersam, A. Khademhosseini, N. Kotov, S. Leporatti, Y. Li, F. Lisdat, L. M. Liz-Marzán, S. Moya, P. Mulvaney, A. L. Rogach, S. Roy, D. G. Shchukin, A. G. Skirtach, M. M. Stevens, G. B. Sukhorukov, P. S. Weiss, Z. Yue, D. Zhu, and W. J. Parak, “The future of layer-by-layer assembly: A tribute to ACS Nano Associate Editor Helmuth Möhwald,” ACS Nano, 13, 6151 (2019).

[477] J. Chang, H. Pu, S. A. Wells, K. Shi, X. Guo, G. Zhou, X. Sui, R. Ren, S. Mao, Y. Chen, M. C. Hersam, and J. Chen, “Semi-quantitative design of black phosphorous field-effect transistor sensors for heavy metal ion detection in aqueous media,” Mol. Syst. Des. Eng., 4, 491 (2019).

[476] D. Jariwala and M. C. Hersam, “2D materials: Molecular design and engineering perspectives,” Mol. Syst. Des. Eng., 4, 469 (2019).

[475] S. Padgaonkar, S. H. Amsterdam, H. Bergeron, K. Su, T. J. Marks, M. C. Hersam, and E. A. Weiss, “Molecular-orientation-dependent interfacial charge transfer in phthalocyanine/MoS2 mixed-dimensional heterojunctions,” J. Phys. Chem. C, 123, 13337 (2019).

[474] S. H. Amsterdam, T. K. Stanev, Q. Zhou, A. J.-T. Lou, H. Bergeron, P. Darancet, M. C. Hersam, N. P. Stern, and T. J. Marks, “Electronic coupling in metallophthalocyanine-transition metal dichalcogenide mixed-dimensional heterojunctions,” ACS Nano, 13, 4183 (2019).

[473] B. Kiraly, X. Liu, L. Wang, Z. Zhang, A. J. Mannix, B. L. Fisher, B. I. Yakobson, M. C. Hersam, and N. P. Guisinger, “Borophene synthesis on Au(111),” ACS Nano, 13, 3816 (2019).

[472] V. K. Sangwan, M. Zhu, S. Clark, K. A. Luck, T. J. Marks, M. G. Kanatzidis, and M. C. Hersam, “Low frequency carrier kinetics in perovskite solar cells,” ACS Appl. Mater. Interfaces, 11, 14166 (2019).

[471] N. P. Guisinger, A. J. Mannix, R. B. Rankin, B. Kiraly, J. A. Phillips, S. B. Darling, B. L. Fisher, M. C. Hersam, and E. V. Iski, “Amino acid immobilization of copper surface diffusion on Cu(111),” Adv. Mater. Interfaces, 6, 1900021 (2019).

[470] X. Liu, L. Wang, S. Li, M. S. Rahn, B. I. Yakobson, and M. C. Hersam, “Geometric imaging of borophene polymorphs with functionalized probes,” Nature Communications, 10, 1642 (2019).

[469] I. Alam, L. M. Guiney, M. C. Hersam, and I. Chowdhury, “Application of external voltage for fouling mitigation from graphene oxide, reduced graphene oxide and molybdenum disulfide functionalized surfaces,” Environ. Sci. Nano, 6, 925 (2019).

[468] D. Song, F. Z. Bidoky, E. B. Secor, M. C. Hersam, and C. D. Frisbie, “Freestanding ion gels for flexible, printed, multifunctional microsupercapacitors,” ACS Appl. Mater. Interfaces, 11, 9947 (2019).

[467] X. Liu, I. Balla, V. K. Sangwan, H. Usta, A. Facchetti, T. J. Marks, and M. C. Hersam, “Ultrahigh vacuum self-assembly of rotationally commensurate C8-BTBT/MoS2/graphene mixed-dimensional heterostructures,” Chem. Mater., 31, 1761 (2019).

[466] J.-W. T. Seo, J. Zhu, V. K. Sangwan, E. B. Secor, S. G. Wallace, and M. C. Hersam, “Fully inkjet-printed, mechanically flexible MoS2 nanosheet photodetectors,” ACS Appl. Mater. Interfaces, 11, 5675 (2019).

[465] Y. Chen, W. Huang, V. K. Sangwan, B. Wang, L. Zeng, G. Wang, Y. Huang, Z. Lu, M. J. Bedzyk, M. C. Hersam, T. J. Marks, and A. Facchetti, “Polymer doping enables two-dimensional electron gas for high-performance homojunction oxide thin-film transistors,” Adv. Mater., 31, 1805082 (2019).

[464] C. Zhong, V. K. Sangwan, J. Kang, J. Luxa, Z. Sofer, M. C. Hersam, and E. A. Weiss, “Hot carrier and surface recombination dynamics in layered InSe crystals,” J. Phys. Chem. Lett., 10, 493 (2019).

 

2018

[463] S. Kim, Z. Yao, J.-M. Lim, M. C. Hersam, C. Wolverton, V. P. Dravid, and K. He, “Atomic-scale observation of electrochemically reversible phase transformations in SnSe2 single crystals,” Adv. Mater., 30, 1804925 (2018).

[462] S. A. Wells, A. Henning, J. T. Gish, V. K. Sangwan, L. J. Lauhon, and M. C. Hersam, “Suppressing ambient degradation of exfoliated InSe nanosheet devices via seeded atomic layer deposition encapsulation,” Nano Lett., 18, 7876 (2018).

[461] J. Kang, I. Balla, X. Liu, H. Bergeron, S. Kim, C. Wolverton, and M. C. Hersam, “Selective transfer of rotationally commensurate MoS2 from an epitaxially grown van der Waals heterostructure,” Chem. Mater., 30, 8495 (2018).

[460] W. C. W. Chan, M. Chhowalla, O. Farokhzad, S. Glotzer, Y. Gogotsi, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, K. Kataoka, A. Khademhosseini, N. A. Kotov, S.-T. Lee, Y. H. Lee, Y. Li, J. E. Millstone, P. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, A. K. Sood, M. M. Stevens, A. T. S. Wee, T. Weil, C. G. Willson, and P. S. Weiss, “The 15th anniversary of the U.S. national nanotechnology initiative,” ACS Nano, 12, 10567 (2018).

[459] B. Kiraly, A. J. Mannix, R. M. Jacobberger, B. L. Fisher, M. S. Arnold, M. C. Hersam, and N. P. Guisinger, “Driving chemical interactions at graphene-germanium van der Waals interfaces via thermal annealing,” Appl. Phys. Lett., 113, 213103 (2018).

[458] S. M. Islam, V. K. Sangwan, Y. Li, J. Kang, X. Zhang, Y. He, J. Zhao, A. Murthy, S. Ma, V. P. Dravid, M. C. Hersam, and M. G. Kanatzidis, “Abrupt thermal shock of (NH4)2Mo3S13 leads to ultrafast synthesis of porous ensembles of MoS2nanocrystals for high gain photodetectors,” ACS Appl. Mater. Interfaces, 10, 38193 (2018).

[457] J. Kang, V. K. Sangwan, H.-S. Lee, X. Liu, and M. C. Hersam, “Solution-processed layered gallium telluride thin-film photodetectors,” ACS Photonics, 5, 3996 (2018).

[456] L. Chen, R. E. Warburton, K.-S. Chen, J. A. Libera, C. Johnson, Z. Yang, M. C. Hersam, J. P. Greeley, and J. W. Elam, “Mechanism for Al2O3 atomic layer deposition on LiMn2O4 studied from in situ measurements and ab initio calculations,” Chem, 4, 2418 (2018).

[455] W. J. Hyun, E. B. Secor, and M. C. Hersam, “Printable graphene inks stabilized with cellulosic polymers,” MRS Bull., 43, 730 (2018).

[454] C. Husko, J. Kang, G. Moille, J. D. Wood, Z. Han, D. Gosztola, X. Ma, S. Combrie, A. De Rossi, M. C. Hersam, X. Checoury, and J. R. Guest, “Silicon-phosphorene nanocavity-enhanced optical emission at telecommunication wavelengths,” Nano Lett., 18, 6515 (2018).

[453] M. Engel, D. B. Farmer, J. T. Azpiroz, J.-W. T. Seo, J. Kang, P. Avouris, M. C. Hersam, R. Krupke, and M. Steiner, “Graphene-enabled and directed nanomaterial placement from solution for large-scale device integration,” Nature Communications, 9, 4095 (2018).

*[452] X. Liu and M. C. Hersam, “Interface characterization and control of 2D materials and heterostructures,” Adv. Mater., 30, 1801586 (2018).

[451] J. Kang, S. A. Wells, V. K. Sangwan, D. Lam, X. Liu, J. Luxa, Z. Sofer, and M. C. Hersam, “Solution-based processing of optoelectronically active indium selenide,” Adv. Mater., 30, 1802990 (2018).

[450] T. Oh, J. C. Ku, J.-H. Lee, M. C. Hersam, and C. A. Mirkin, “Density-gradient control over nanoparticle supercrystal formation,” Nano Lett., 18, 6022 (2018).

[449] C.-W. Kung, A. E. Platero-Prats, R. J. Drout, J. Kang, T. C. Wang, C. O. Audu, M. C. Hersam, K. W. Chapman, O. K. Farha, and J. T. Hupp, “Inorganic ‘conductive glass’ approach to rendering mesoporous metal-organic frameworks electronically conductive and chemically responsive,” ACS Appl. Mater. Interfaces, 10, 30532 (2018).

[448] C. Sun, M. Shen, A. D. Chavez, A. M. Evans, X. Liu, B. Harutyunyan, N. C. Flanders, M. C. Hersam, M. J. Bedzyk, M. Olvera de la Cruz, and W. R. Dichtel, “High aspect ratio nanotubes assembled from macrocyclic iminium salts,” Proc. Nat. Acad. Sci. USA, 115, 8883 (2018).

[447] Q. Li, Y. Xu, Z. Yao, J. Kang, X. Liu, C. Wolverton, M. C. Hersam, J. Wu, and V. P. Dravid, “Revealing the effects of electrode crystallographic orientation on battery electrochemistry via the anisotropic lithiation and sodiation of ReS2,” ACS Nano, 12, 7875 (2018).

[446] Y. Choi, J. Kang, E. B. Secor, J. Sun, H. Kim, J. A. Lim, M. S. Kang, M. C. Hersam, and J. H. Cho, “Capacitively coupled hybrid ion gel and carbon nanotube thin-film transistors for low voltage flexible logic circuits,” Adv. Funct. Mater., 28, 1802610 (2018).

[445] X. Liu, Z. Zhang, L. Wang, B. I. Yakobson, and M. C. Hersam, “Intermixing and periodic self-assembly of borophene line defects,” Nature Materials, 17, 783 (2018).

[444] L. Chen, K.-S. Chen, X. Chen, G. Ramirez, Z. Huang, N. R. Geise, H.-G. Steinrück, B. L. Fisher, R. Shahbazian-Yassar, M. F. Toney, M. C. Hersam, and J. W. Elam, “Novel ALD chemistry enabled low-temperature synthesis of lithium fluoride coatings for durable lithium anodes,” ACS Appl. Mater. Interfaces, 10, 26972 (2018).

[443] J. Wu, Q. Li, Y. Xu, Z. Yao, J. Kang, X. Liu, C. Wolverton, M. C. Hersam, and V. P. Dravid, “Anisotropic lithiation and sodiation of ReS2 studied by in-situ TEM,” Microsc. Microanal., 24, 1570 (2018).

[442] W. J. Hyun, E. B. Secor, F. Z. Bidoky, S. B. Walker, J. A. Lewis, M. C. Hersam, L. F. Francis, and C. D. Frisbie, “Self-aligned capillarity-assisted printing of top-gate thin-film transistors on plastic,” Flexible and Printed Electronics, 3, 035004 (2018).

[441] Y. Xu, J. Kang, M. C. Hersam, J. Wu, and V. P. Dravid, “Lithium electrochemistry of WS2 nanoflakes studied by in-situ TEM,” Microsc. Microanal., 24, 1860 (2018).

[440] I. Alam, L. M. Guiney, M. C. Hersam, and I. Chowdhury, “Antifouling properties of two-dimensional molybdenum disulfide and graphene oxide nanomaterials,” Environ. Sci. Nano, 5, 1628 (2018).

[439] L. M. Guiney, X. Wang, T. Xia, A. E. Nel, and M. C. Hersam, “Assessing and mitigating the hazard potential of two-dimensional materials,” ACS Nano, 12, 6360 (2018).

[438] D. Song, E. B. Secor, Y. Wang, M. C. Hersam, and C. D. Frisbie, “Transfer printing of sub-5 μm graphene electrodes for flexible microsupercapacitors,” ACS Appl. Mater. Interfaces, 10, 22303 (2018).

[437] S. P. Senanayak, V. K. Sangwan, J. J. McMorrow, K. Everaerts, Z. Chen, A. Facchetti, M. C. Hersam, T. J. Marks, and K. S. Narayan, “Self-assembled photochromic molecular dipoles for high-performance polymer thin-film transistors,” ACS Appl. Mater. Interfaces, 10, 21492 (2018).

*[436] E. B. Secor, M. H. Dos Santos, S. G. Wallace, N. P. Bradshaw, and M. C. Hersam, “Tailoring the porosity and microstructure of printed graphene electrodes via polymer phase inversion,” J. Phys. Chem. C, 122, 13745 (2018).

[435] X. Wang, J.-H. Lee, R. Li, Y.-P. Liao, J. Kang, C. H. Chang, L. M. Guiney, V. Mirshafiee, L. Li, J. Lu, T. Xia, M. C. Hersam, and A. E. Nel, “Toxicological profiling of highly purified single-walled carbon nanotubes with different lengths in the rodent lung and Escherichia Coli,” Small, 14, 1703915 (2018).

[434] L. M. Guiney, N. D. Mansukhani, A. E. Jakus, S. G. Wallace, R. N. Shah, and M. C. Hersam, “Three-dimensional printing of cytocompatible, thermally conductive hexagonal boron nitride composites,” Nano Lett., 18, 3488 (2018).

[433] M. J. Moody, A. Henning, T. Jurca, J. Y. Shang, H. Bergeron, I. Balla, J. N. Olding, E. A. Weiss, M. C. Hersam, T. L. Lohr, T. J. Marks, and L. J. Lauhon, “Atomic layer deposition of molybdenum oxides with tunable stoichiometry enables controllable doping of MoS2,” Chem. Mater., 30, 3628 (2018).

*[432] A. J. Mannix, Z. Zhang, N. P. Guisinger, B. I. Yakobson, and M. C. Hersam, “Borophene as a prototype for synthetic 2D materials development,” Nature Nanotechnology, 13, 444 (2018).

[431] A. Henning, V. K. Sangwan, H. Bergeron, I. Balla, Z. Sun, M. C. Hersam, and L. J. Lauhon, “Charge separation at mixed-dimensional single and multilayer MoS2/silicon nanowire heterojunctions,” ACS Appl. Mater. Interfaces, 10, 16760 (2018).

[430] Z. Liu, S. A. Wells, S. Butun, E. Palacios, M. C. Hersam, and K. Aydin, “Extrinsic polarization-controlled optical anisotropy in plasmon-black phosphorus coupled system,” Nanotechnology, 29, 285202 (2018).

[429] A. R. Naik, J. J. Kim, Ö. Usluer, D. L. G. Arellano, E. B. Secor, A. Facchetti, M. C. Hersam, A. L. Briseno, and J. J. Watkins, “Direct printing of graphene electrodes for high-performance organic inverters,” ACS Appl. Mater. Interfaces, 10, 15988 (2018).

[428] D. Nguyen, G. Kang, N. Chiang, X. Chen, T. Seideman, M. C. Hersam, G. C. Schatz, and R. P. Van Duyne, “Probing molecular-scale catalytic interactions between oxygen and cobalt phthalocyanine using tip-enhanced Raman spectroscopy,” J. Am. Chem. Soc., 140, 5948 (2018).

[427] G. P. Campbell, A. J. Mannix, J. D. Emery, T.-L. Lee, N. P. Guisinger, M. C. Hersam, and M. J. Bedzyk, “Resolving the chemically discrete structure of synthetic borophene polymorphs,” Nano Lett., 18, 2816 (2018).

[426] G. Hu, J. Kang, L. W. T. Ng, X. Zhu, R. C. T. Howe, C. Jones, M. C. Hersam, and T. Hasan, “Functional inks and printing of two-dimensional materials,” Chem. Soc. Rev., 47, 3265 (2018).

[425] C. Zhong, V. K. Sangwan, C. Wang, H. Bergeron, M. C. Hersam, and E. A. Weiss, “Mechanisms of ultrafast charge separation in a PTB7/monolayer MoS2 van der Waals heterojunction,” J. Phys. Chem. Lett., 9, 2484 (2018).

[424] W. J. Parak, W. C. W. Chan, M. Chhowalla, O. Farokhzad, S. Glotzer, Y. Gogotsi, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, K. Kataoka, A. Khademhosseini, N. A. Kotov, S.-T. Lee, Y. H. Lee, Y. Li, J. Millstone, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “Helmuth Möhwald (1946−2018),” ACS Nano, 12, 3053 (2018).

*[423] V. K. Sangwan and M. C. Hersam, “Electronic transport in two-dimensional materials,” Annu. Rev. Phys. Chem., 69, 299 (2018).

[422] G. P. Campbell, B. Kiraly, R. M. Jacobberger, A. J. Mannix, M. S. Arnold, M. C. Hersam, N. P. Guisinger, and M. J. Bedzyk, “Epitaxial graphene-encapsulated surface reconstruction of Ge(110),” Phys. Rev. Mater., 2, 044004 (2018).

[421] D. Lam, K.-S. Chen, J. Kang, X. Liu, and M. C. Hersam, “Anhydrous liquid-phase exfoliation of pristine electrochemically active GeS nanosheets,” Chem. Mater., 30, 2245 (2018).

[420] Y.-L. Wu, N. S. Bobbitt, J. L. Logsdon, N. E. Powers-Riggs, J. N. Nelson, X. Liu, T. C. Wang, R. Q. Snurr, J. T. Hupp, O. K. Farha, M. C. Hersam, and M. R. Wasielewski, “Tunable crystallinity and charge transfer in two-dimensional G-quadruplex organic frameworks,” Angew. Chem. Int. Ed., 59, 3985 (2018).

[419] R. Li, L. M. Guiney, C. H. Chang, N. D. Mansukhani, Z. Ji, X. Wang, Y.-P. Liao, W. Jiang, B. Sun, M. C. Hersam, A. E. Nel, and T. Xia, “Surface oxidation of graphene oxide determines membrane damage, lipid peroxidation, and cytotoxicity in macrophages in a pulmonary toxicity model,” ACS Nano, 12, 1390 (2018).

[418] L. Zeng, R. Turrisi, B. Fu, J. D. Emery, A. R. Walker, M. A. Ratner, M. C. Hersam, A. F. Facchetti, T. J. Marks, and M. J. Bedzyk, “Measuring dipole inversion in self-assembled nano-dielectric molecular layers,” ACS Appl. Mater. Interfaces, 10, 6484 (2018).

[417] L. Peng, S. A. Wells, C. R. Ryder, M. C. Hersam, and M. Grayson, “All-electrical determination of crystal orientation in anisotropic two-dimensional materials,” Phys. Rev. Lett., 120, 086801 (2018).

[416] V. K. Sangwan, H.-S. Lee, H. Bergeron, I. Balla, M. E. Beck, K.-S. Chen, and M. C. Hersam, “Multi-terminal memtransistors from polycrystalline monolayer MoS2,” Nature, 554, 500 (2018).

[415] V. K. Sangwan, M. E. Beck, A. Henning, J. Luo, H. Bergeron, J. Kang, I. Balla, H. Inbar, L. J. Lauhon, and M. C. Hersam, “Self-aligned van der Waals heterojunction diodes and transistors,” Nano Lett., 18, 1421 (2018).

[414] H. Liu, Q. Li, Z. Yao, L. Li, Y. Li, C. Wolverton, M. C. Hersam, J. Wu, and V. P. Dravid, “Origin of fracture-resistance to large volume change in Cu-substituted Co3O4 electrodes,” Adv. Mater., 30, 1704851 (2018).

[413] T. LaMountain, H. Bergeron, I. Balla, T. K. Stanev, M. C. Hersam, and N. P. Stern, “Valley-selective optical Stark effect probed by Kerr rotation,” Phys. Rev. B, 97, 045307 (2018).

[412] N. D. Mansukhani, L. M. Guiney, Z. Wei, E. W. Roth, K. W. Putz, E. Luijten, and M. C. Hersam, “Optothermally reversible carbon nanotube-DNA supramolecular hybrid hydrogels,” Macromol. Rapid Commun., 39, 1700587 (2018).

[411] E. B. Secor, A. B. Cook, C. E. Tabor, and M. C. Hersam, “Wiring up liquid metal: Stable and robust electrical contacts enabled by printable graphene inks,” Adv. Electron. Mater., 4, 1700483 (2018).

2017

*[410] V. K. Sangwan, H.-S. Lee, and M. C. Hersam, “Gate-tunable memristors from monolayer MoS2,” Proceedings of the 63rd International Electron Devices Meeting, 17-107, 5.1.1 (2017).

[409] N. Chiang, N. Jiang, L. R. Madison, E. A. Pozzi, M. R. Wasielewski, M. A. Ratner, M. C. Hersam, T. Seideman, G. C. Schatz, and R. P. Van Duyne, “Probing intermolecular vibrational symmetry breaking in self-assembled monolayers with ultrahigh vacuum tip-enhanced Raman spectroscopy,” J. Am. Chem. Soc., 139, 18664 (2017).

[408] K. A. Luck, V. K. Sangwan, P. E. Hartnett, H. N. Arnold, M. R. Wasielewski, T. J. Marks, and M. C. Hersam, “Correlated in situ low-frequency noise and impedance spectroscopy reveal recombination dynamics in organic solar cells using fullerene and non-fullerene acceptors,” Adv. Funct. Mater., 27, 1703805 (2017).

[407] W. C. W. Chan, M. Chhowalla, O. Farokhzad, S. Glotzer, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, K. Kataoka, A. Khademhosseini, N. A. Kotov, S.-T. Lee, Y. Li, J. Millstone, H. Möhwald, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, L. E. Fernandez, and P. S. Weiss, “A big year ahead for nano in 2018,” ACS Nano, 11, 11755 (2017).

[406] K.-C. Wang, T. K. Stanev, D. Valencia, J. Charles, A. Henning, V. K. Sangwan, A. Lahiri, D. Mejia, P. Sarangapani, M. Povolotskyi, A. Afzalian, J. Maassen, G. Klimeck, M. C. Hersam, L. J. Lauhon, N. P. Stern, and T. Kubis, “Control of interlayer physics in 2H transition metal dichalcogenides,” J. Appl. Phys., 122, 224302 (2017).

[405] M. Zhu, W. Liu, W. Ke, S. Clark, E. B. Secor, T.-B. Song, M. G. Kanatzidis, X. Li, and M. C. Hersam, “Millisecond-pulsed photonically-annealed tin oxide electron transport layers for efficient perovskite solar cells,” J. Mater. Chem. A, 5, 24110 (2017).

[404] H. Jang, C. R. Ryder, J. D. Wood, M. C. Hersam, and D. G. Cahill, “3D anisotropic thermal conductivity of exfoliated rhenium disulfide,” Adv. Mater., 29, 1700650 (2017).

[403] E. B. Secor, T. Z. Gao, M. H. Dos Santos, S. G. Wallace, K. W. Putz, and M. C. Hersam, “Combustion-assisted photonic annealing of printable graphene inks via exothermic binders,” ACS Appl. Mater. Interfaces, 9, 29418 (2017).

[402] W. J. Hyun, E. B. Secor, C.-H. Kim, M. C. Hersam, L. F. Francis, and C. D. Frisbie, “Scalable, self-aligned printing of flexible graphene micro-supercapacitors,” Adv. Energy Mater., 7, 1700285 (2017).

[401] W. C. W. Chan, M. Chhowalla, S. Glotzer, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, K. Kataoka, A. Khademhosseini, N. A. Kotov, S.-T. Lee, Y. Li, H. Möhwald, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, L. E. Fernandez, and P. S. Weiss, “Our first and next decades at ACS Nano,” ACS Nano, 11, 7553 (2017).

*#[400] K.-S. Chen, I. Balla, N. S. Luu, and M. C. Hersam, “Emerging opportunities for two-dimensional materials in lithium-ion batteries,” ACS Energy Lett., 2, 2026 (2017).

[399] W. A. Gaviria Rojas, J. J. McMorrow, M. L. Geier, Q. Tang, C. H. Kim, T. J. Marks, and M. C. Hersam, “Solution-processed carbon nanotube true random number generator,” Nano Lett., 17, 4976 (2017).

[398] A. Behranginia, P. Yasaei, A. K. Majee, V. K. Sangwan, F. Long, C. J. Foss, T. Foroozan, S. Fuladi, M. R. Hantehzadeh, R. Shahbazian-Yassar, M. C. Hersam, Z. Aksamija, and A. Salehi-Khojin, “Direct growth of high mobility and low-noise lateral MoS2-graphene heterostructure electronics,” Small, 13, 1604301 (2017).

[397] D. Song, A. Mahajan, E. B. Secor, M. C. Hersam, L. F. Francis, and C. D. Frisbie, “High-resolution transfer printing of graphene lines for fully printed, flexible electronics,” ACS Nano, 11, 7431 (2017).

*[396] X. Liu, C. R. Ryder, S. A. Wells, and M. C. Hersam, “Resolving the in-plane anisotropic properties of black phosphorus,” Small Methods, 1, 1700143 (2017).

*[395] T. A. Shastry and M. C. Hersam, “Carbon nanotubes in thin-film solar cells,” Adv. Energy Mater., 7, 1601205 (2017).

[394] Y. Choi, J. Kang, D. Jariwala, S. A. Wells, M. S. Kang, T. J. Marks, M. C. Hersam, and J. H. Cho, “Low-voltage 2D material field-effect transistors enabled by ion gel capacitive coupling,” Chem. Mater., 29, 4008 (2017).

[393] Y.-L. Wu, N. E. Horwitz, K.-S. Chen, D. A. Gomez-Gualdron, N. S. Luu, L. Ma, T. C. Wang, M. C. Hersam, J. T. Hupp, O. K. Farha, R. Q. Snurr, and M. R. Wasielewski, “G-quadruplex organic frameworks,” Nature Chemistry, 9, 466 (2017).

*#[392] E. A. Pozzi, G. Goubert, N. Chiang, N. Jiang, C. T. Chapman, M. O. McAnally, A.-I. Henry, T. Seideman, G. C. Schatz, M. C. Hersam, and R. P. Van Duyne, “Ultrahigh-vacuum tip-enhanced Raman spectroscopy,” Chem. Rev., 117, 4961 (2017).

[391] K.-S. Chen, R. Xu, N. S. Luu, E. B. Secor, K. Hamamoto, Q. Li, S. Kim, V. K. Sangwan, I. Balla, L. M. Guiney, J.-W. T. Seo, X. Yu, W. Liu, J. Wu, C. Wolverton, V. P. Dravid, S. A. Barnett, J. Lu, K. Amine, and M. C. Hersam, “Comprehensive enhancement of nanostructured lithium-ion battery cathode materials via conformal graphene dispersion,” Nano Lett., 17, 2539 (2017).

*[390] J. Kang, V. K. Sangwan, J. D. Wood, and M. C. Hersam, “Solution-based processing of monodisperse two-dimensional nanomaterials,” Acc. Chem. Res., 50, 943 (2017).

[389] J. J. McMorrow, C. D. Cress, W. A. Gaviria Rojas, M. L. Geier, T. J. Marks, and M. C. Hersam, “Radiation-hard complementary integrated circuits based on semiconducting single-walled carbon nanotubes,” ACS Nano, 11, 2992 (2017).

[388] B. Pelaz, C. Alexiou, R. A. Alvarez Puebla, F. Alves, A. M. Andrews, S. Ashraf, L. P. Balogh, L. Ballerini, A. Bestetti, C. Brendel, S. Bosi, M. Carril, W. C. W. Chan, C. Chen, X. Chen, X. Chen, Z. Cheng, D. Cui, J. Du, C. Dullin, A. Escudero, N. Feliu, M. Gao, M. George, A. Grünweller, Z. Gu, Y. Gogotsi, N. Halas, N. Hampp, R. K. Hartmann, M. C. Hersam, P. Hunziker, J. Jian, X. Jiang, P. Jungebluth, P. Kadhiresan, K. Kataoka, A. Khademhosseini, J. Kopecek, N. A. Kotov, H. F. Krug, D. S. Lee, C.-M. Lehr, K. W. Leong, X.-J. Liang, M. Lim, L. M. Liz Marzán, X. Ma, P. Macchiarini, H. Meng, H. Möhwald, P. Mulvaney, A. E. Nel, S. Nie, P. Nordlander, T. Okano, J. Oliveira, T. H. Park, R. M. Penner, M. Prato, V. Puntes, V. Rotello, A. Samarakoon, R. E. Schaak, Y. Shen, S. Sjoqvist, A. G. Skirtach, M. G. Soliman, M. M. Stevens, B. Zhong Tang, R. Tietze, S. VanEpps, B. N. Udugama, H.-W. Sung, T. Weil, P. S. Weiss, I. Willner, Y. Wu, L. Yang, Z. Yue, Q. Zhang, Q. Zhang, X.-E. Zhang, Y. Zhao, X. Zhou, and W. J. Parak, “Diverse applications of nanomedicine,” ACS Nano, 11, 2313 (2017).

[387] Y. Li, J. M. Buriak, Y. Gogotsi, M. C. Hersam, C. R. Kagan, and P. S. Weiss, “Prof. Millie Dresselhaus (1930–2017), Carbon Nanomaterials Pioneer,” ACS Nano, 11, 2307 (2017).

[386] E. B. Secor, T. Z. Gao, A. E. Islam, R. Rao, S. G. Wallace, J. Zhu, K. W. Putz, B. Maruyama, and M. C. Hersam, “Enhanced conductivity, adhesion, and environmental stability of printed graphene inks with nitrocellulose,” Chem. Mater., 29, 2332 (2017).

[385] A. Autere, C. R. Ryder, A. Saynatjoki, L. Karvonen, B. Amirsolaimani, R. A. Norwood, N. Peyghambarian, K. Kieu, H. Lipsanen, M. C. Hersam, and Z. Sun, “Rapid and large-area characterization of exfoliated black phosphorus using third-harmonic generation microscopy,” J. Phys. Chem. Lett., 8, 1343 (2017).

[384] Y.-M. Fu, M.-C. Chou, Y.-T. Cheng, E. B. Secor, and M. C. Hersam, “An inkjet printed piezoresistive back-to-back graphene tactile sensor for endosurgical palpation applications,” Proc. IEEE MEMS, 30, 612 (2017).

[383] A. Khademhosseini, W. C. W. Chan, M. Chhowalla, S. C. Glotzer, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, N. A. Kotov, S.-T. Lee, Y. Li, H. Möhwald, P. A. Mulvaney, A. E. Nel, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, J. Brinker, X. Chen, L. Chi, M. Crommie, C. Dekker, O. Farokhzad, C. Gerber, D. S. Ginger, L. L. Kiessling, C. Landes, G. Leggett, X.-J. Liang, L. Liz-Marzán, J. Millstone, T. Odom, A. Ozcan, M. Prato, C. N. R. Rao, M. J. Sailor, E. Weiss, and P. S. Weiss, “Nanoscience and nanotechnology cross borders,” ACS Nano, 11, 1123 (2017).

[382] X. Liu, Z. Wei, I. Balla, A. J. Mannix, N. P. Guisinger, E. Luijten, and M. C. Hersam, “Self-assembly of electronically abrupt borophene/organic lateral heterostructures,” Science Advances, 3, e1602356 (2017).

[381] J. J. McMorrow, C. D. Cress, H. N. Arnold, V. K. Sangwan, D. Jariwala, S. W. Schmucker, T. J. Marks, and M. C. Hersam, “Vacuum ultraviolet radiation effects on two-dimensional MoS2 field-effect transistors,” Appl. Phys. Lett., 110, 073102 (2017).

[380] H. Bergeron, V. K. Sangwan, J. J. McMorrow, G. P. Campbell, I. Balla, X. Liu, M. J. Bedzyk, T. J. Marks, and M. C. Hersam, “Chemical vapor deposition of monolayer MoS2 directly on ultrathin Al2O3 for low-power electronics,” Appl. Phys. Lett., 110, 053101 (2017).

[379] B. Kim, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Inkjet printed circuits based on ambipolar and p-type carbon nanotube thin-film transistors,” Scientific Reports, 6, 39627 (2017).

#[378] A. J. Mannix, B. Kiraly, M. C. Hersam, and N. P. Guisinger, “Synthesis and chemistry of elemental 2D materials,” Nature Reviews Chemistry, 1, 0014 (2017).

#[377] D. Jariwala, T. J. Marks, and M. C. Hersam, “Mixed-dimensional van der Waals heterostructures,” Nature Materials, 16, 170 (2017).

*[376] J. Zhu and M. C. Hersam, “Assembly and electronic applications of colloidal nanomaterials,” Adv. Mater., 29, 1603895 (2017).

[375] S. B. Homan, V. K. Sangwan, I. Balla, H. Bergeron, E. A. Weiss, and M. C. Hersam, “Ultrafast exciton dissociation and long-lived charge separation in a photovoltaic pentacene-MoS2 van der Waals heterojunction,” Nano Lett., 17, 164 (2017).

[374] X. Liu, K.-S. Chen, S. A. Wells, I. Balla, J. Zhu, J. D. Wood, and M. C. Hersam, “Scanning probe nanopatterning and layer-by-layer thinning of black phosphorus,” Adv. Mater., 29, 1604121 (2017).

 

2016

[373] R. Li, N. D. Mansukhani, L. M. Guiney, Z. Ji, Y. Zhao, C. H. Chang, C. T. French, J. F. Miller, M. C. Hersam, A. E. Nel, and T. Xia, “Identification and optimization of carbon radicals on hydrated graphene oxide for ubiquitous antibacterial coatings,” ACS Nano, 10, 10966 (2016).

[372] W. W. C. Chan, M. Chhowalla, S. Glotzer, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, A. Khademhosseini, N. A. Kotov, S.-T. Lee, Y. Li, H. Möhwald, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, L. E. Fernandez, and P. S. Weiss, “Nanoscience and nanotechnology impacting diverse fields of science, engineering, and medicine,” ACS Nano, 10, 10615 (2016).

[371] N. Chiang, X. Chen, G. Goubert, D. V. Chulhai, X. Chen, E. A. Pozzi, N. Jiang, M. C. Hersam, T. Seideman, L. Jensen, and R. P. Van Duyne, “Conformational contrast of surface-mediated molecular switches yields angstrom-scale spatial resolution in ultrahigh vacuum tip-enhanced Raman spectroscopy,” Nano Lett., 16, 7774 (2016).

[370] K. Yoon, J.-H. Lee, J. Kang, J. Kang, M. J. Moody, M. C. Hersam, and L. J. Lauhon, “Metal-free carbon-based nanomaterial coatings protect silicon photoanodes in solar water-splitting,” Nano Lett., 16, 7370 (2016).

[369] Z. Lin, A. McCreary, N. Briggs, S. Subramanian, K. Zhang, Y. Sun, X. Li, N. Borys, H. Yuan, S. K. Fullerton-Shirey, A. Chernikov, H. Zhao, S. McDonnell, A. M. Lindenberg, K. Xiao, B. J. LeRoy, M. Drndic, J. C. M. Hwang, J. Park, M. Chhowalla, R. E. Schaak, A. Javey, M. C. Hersam, J. Robinson, and M. Terrones, “2D materials advances: From large scale synthesis and controlled heterostructures to improved characterization techniques, defects and applications,” 2D Materials, 3, 042001 (2016).

[368] T. A. Shastry, I. Balla, H. Bergeron, S. H. Amsterdam, T. J. Marks, and M. C. Hersam, “Mutual photoluminescence quenching and photovoltaic effect in large-area single-layer MoS2-polymer heterojunctions,” ACS Nano, 10, 10573 (2016).

[367] J. Kang, V. K. Sangwan, J. D. Wood, X. Liu, I. Balla, D. Lam, and M. C. Hersam, “Layer-by-layer sorting of rhenium disulfide via high-density isopycnic density gradient ultracentrifugation,” Nano Lett., 16, 7216 (2016).

[366] W.-K. Lee, J. Kang, K.-S. Chen, C. J. Engel, W.-B. Jung, D. Rhee, M. C. Hersam, and T. W. Odom, “Multiscale, hierarchical patterning of graphene by conformal wrinkling,” Nano Lett., 16, 7121 (2016).

[365] D. L. Gonzalez Arellano, H. Lee, E. B. Secor, E. K. Burnett, M. C. Hersam, J. J. Watkins, and A. L. Briseno, “Graphene ink as a conductive templating interlayer for enhanced charge transport of C60-based devices,” ACS Appl. Mater. Interfaces, 8, 29594 (2016).

[364] L. Li, E. B. Secor, K.-S. Chen, J. Zhu, X. Liu, T. Z. Gao, J.-W. T. Seo, Y. Zhao, and M. C. Hersam, “High-performance solid-state supercapacitors and microsupercapacitors derived from printable graphene inks,” Adv. Energy Mater., 6, 1600909 (2016).

[363] C. R. Kagan, L. E. Fernandez, Y. Gogotsi, P. T. Hammond, M. C. Hersam, A. E. Nel, R. M. Penner, C. G. Willson, and P. S. Weiss, “Nano day: Celebrating the next decade of nanoscience and nanotechnology,” ACS Nano, 10, 9093 (2016).

*[362] J. Kang, S. A. Wells, J. D. Wood, J.-H. Lee, X. Liu, C. R. Ryder, J. Zhu, J. R. Guest, C. A. Husko, and M. C. Hersam, “Stable aqueous dispersions of optically and electronically active phosphorene,” Proc. Nat. Acad. Sci. USA, 113, 11688 (2016).

[361] Z. Zhang, A. J. Mannix, Z. Hu, B. Kiraly, N. P. Guisinger, M. C. Hersam, and B. I. Yakobson, “Substrate-induced nanoscale undulations of borophene on silver,” Nano Lett., 16, 6622 (2016).

[360] K. A. Luck, H. N. Arnold, T. A. Shastry, T. J. Marks, and M. C. Hersam, “Suppression of polyfluorene photo-oxidative degradation via encapsulation of single-walled carbon nanotubes,” J. Phys. Chem. Lett., 7, 4223 (2016).

[359] K. S. B. Culver, Y. J. Shin, M. W. Rotz, T. J. Meade, M. C. Hersam, and T. W. Odom, “Shape-dependent relaxivity of nanoparticle-based T1 magnetic resonance imaging contrast agents,” J. Phys. Chem. C, 120, 22103 (2016).

[358] A. T. S. Wee, M. C. Hersam, M. Chhowalla, and Y. Gogotsi, “An update from flatland,” ACS Nano, 10, 8121 (2016).

*[357] X. Liu, I. Balla, H. Bergeron, and M. C. Hersam, “Point defects and grain boundaries in rotationally commensurate MoS2 on epitaxial graphene,” J. Phys. Chem. C, 120, 20798 (2016).

[356] S. Jang, S. Kim, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Inkjet printed carbon nanotubes in short channel field effect transistors: Influence of nanotube distortion and gate insulator interface modification,” Flexible and Printed Electronics, 1, 035001 (2016).

[355] G. Evmenenko, T. T. Fister, D. B. Buchholz, Q. Li, K.-S. Chen, J. Wu, V. P. Dravid, M. C. Hersam, P. Fenter, and M. J. Bedzyk, “Morphological evolution of multilayer Ni/NiO thin film electrodes during lithiation,” ACS Appl. Mater. Interfaces, 8, 19979 (2016).

[354] T. A. Shastry, P. E. Hartnett, M. R. Wasielewski, T. J. Marks, and M. C. Hersam, “Ternary polymer-perylenediimide-carbon nanotube photovoltaics with high efficiency and stability under super-solar irradiation,” ACS Energy Lett., 1, 548 (2016).

[353] E. B. Secor, J. Smith, T. J. Marks, and M. C. Hersam, “High-performance inkjet-printed indium-gallium-zinc-oxide transistors enabled by embedded, chemically stable graphene electrodes,” ACS Appl. Mater. Interfaces, 8, 17428 (2016).

[352] M. L. Geier, K. Moudgil, S. Barlow, S. R. Marder, and M. C. Hersam, “Controlled n-type doping of carbon nanotube transistors by an organorhodium dimer,” Nano Lett., 16, 4329 (2016).

[351] E. A. Pozzi, N. L. Gruenke, N. Chiang, D. V. Zhdanov, N. Jiang, T. Seideman, G. C. Schatz, M. C. Hersam, and R. P. Van Duyne, “Operational regimes in picosecond and femtosecond pulse-excited ultrahigh vacuum SERS,” J. Phys. Chem. Lett., 7, 2971 (2016).

[350] B. Kim, K. Liang, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Enhancement of minority carrier injection in ambipolar carbon nanotube transistors using double-gate structures,” Appl. Phys. Lett., 109, 023515 (2016).

#[349] N. Jiang, D. Kurouski, E. A. Pozzi, N. Chiang, M. C. Hersam, and R. P. Van Duyne, “Tip-enhanced Raman spectroscopy: From concepts to practical applications,” Chem. Phys. Lett., 659, 16 (2016).

[348] J. A. Jackman, D.-J. Cho, J. Lee, J. M. Chen, F. Besenbacher, D. A. Bonnell, M. C. Hersam, P. S. Weiss, and N.-J. Cho, “Nanotechnology education for the global world: Training the leaders of tomorrow,” ACS Nano, 10, 5595 (2016).

[347] X. Wang, N. D. Mansukhani, L. M. Guiney, J.-H. Lee, R. Li, B. Sun, Y.-P. Liao, C. H. Chang, Z. Ji, T. Xia, M. C. Hersam, and A. E. Nel, “Toxicological profiling of highly purified metallic and semiconducting single-walled carbon nanotubes in the rodent lung and E. coli,” ACS Nano, 10, 6008 (2016).

[346] P.-C. Chen, X. Liu, J. L. Hedrick, Z. Xie, S. Wang, Q.-Y. Lin, M. C. Hersam, V. P. Dravid, and C. A. Mirkin, “Polyelemental nanoparticle libraries,” Science, 352, 1565 (2016).

[345] P. E. Hartnett, E. A. Margulies, H. S. S. R. Matte, M. C. Hersam, T. J. Marks, and M. R. Wasielewski, “Effects of crystalline perylenediimide acceptor morphology on optoelectronic properties and device performance,” Chem. Mater., 28, 3928 (2016).

[344] N. Jiang, N. Chiang, L. R. Madison, E. A. Pozzi, M. R. Wasielewski, T. Seideman, M. A. Ratner, M. C. Hersam, G. C. Schatz, and R. P. Van Duyne, “Nanoscale chemical imaging of a dynamic molecular phase boundary with ultrahigh vacuum tip-enhanced Raman spectroscopy,” Nano Lett., 16, 3898 (2016).

[343] Y. Cao, Y. Che, J.-W. T. Seo, H. Gui, M. C. Hersam, and C. Zhou, “High-performance radio frequency transistors based on diameter-separated semiconducting carbon nanotubes,” Appl. Phys. Lett., 108, 233105 (2016).

[342] C. R. Ryder, J. D. Wood, S. A. Wells, Y. Yang, D. Jariwala, T. J. Marks, G. C. Schatz, and M. C. Hersam, “Covalent functionalization and passivation of exfoliated black phosphorus via aryl diazonium chemistry,” Nature Chemistry, 8, 597 (2016).

[341] P. E. Hartnett, H. S. S. R. Matte, N. D. Eastham, N. E. Jackson, Y. Wu, L. X. Chen, M. A. Ratner, R. P. H. Chang, M. C. Hersam, M. R. Wasielewski, and T. J. Marks, “Ring-fusion as a perylenediimide dimer design concept for high-performance non-fullerene organic photovoltaic acceptors,” Chem. Sci., 7, 3543 (2016).

[340] B. Kiraly, A. J. Mannix, R. M. Jacobberger, B. L. Fisher, M. S. Arnold, M. C. Hersam, and N. P. Guisinger, “Sub-5 nm, globally aligned graphene nanoribbons on Ge(001),” Appl. Phys. Lett., 108, 213101 (2016).

[339] Y. Choi, J. Kang, D. Jariwala, M. S. Kang, T. J. Marks, M. C. Hersam, and J. H. Cho, “Low-voltage complementary electronics from ion-gel-gated vertical van der Waals heterostructures,” Adv. Mater., 28, 3742 (2016).

*[338] C. R. Ryder, J. D. Wood, S. A. Wells, and M. C. Hersam, “Chemically tailoring semiconducting two-dimensional transition metal dichalcogenides and black phosphorus,” ACS Nano, 10, 3900 (2016).

[337] J. Kang, D. Jariwala, C. R. Ryder, S. A. Wells, Y. Choi, E. Hwang, J. H. Cho, T. J. Marks, and M. C. Hersam, “Probing out-of-plane charge transport in black phosphorus with graphene-contacted vertical field-effect transistors,” Nano Lett., 16, 2580 (2016).

[336] H. N. Arnold, C. D. Cress, J. J. McMorrow, S. W. Schmucker, V. K. Sangwan, L. Jaber-Ansari, R. Kumar, K. P. Puntambekar, K. A. Luck, T. J. Marks, and M. C. Hersam, “Tunable radiation response in hybrid organic-inorganic gate dielectrics for low-voltage graphene electronics,” ACS Appl. Mater. Interfaces, 8, 5058 (2016).

[335] H. N. Arnold, V. K. Sangwan, S. W. Schmucker, C. D. Cress, K. A. Luck, A. L. Friedman, J. T. Robinson, T. J. Marks, and M. C. Hersam, “Reducing flicker noise in chemical vapor deposition graphene field-effect transistors,” Appl. Phys. Lett., 108, 073108 (2016).

[334] X. Liu, I. Balla, H. Bergeron, G. P. Campbell, M. J. Bedzyk, and M. C. Hersam, “Rotationally commensurate growth of MoS2 on epitaxial graphene,” ACS Nano,10, 1067 (2016).

#[333] T. A. Shastry, S. C. Clark, A. J. E. Rowberg, K. A. Luck, K.-S. Chen, T. J. Marks, and M. C. Hersam, “Enhanced uniformity and area scaling in carbon nanotube-fullerene bulk-heterojunction solar cells enabled by solvent additives,” Adv. Energy Mater., 6, 1501466 (2016).

[332] N. D. Mansukhani, L. M. Guiney, P. J. Kim, Y. Zhao, D. Alducin, A. Ponce, E. Larios, M. J. Yacaman, and M. C. Hersam, “High-concentration aqueous dispersions of nanoscale 2D materials using nonionic, biocompatible block copolymers,” Small, 12, 294 (2016).

[331] D. Jariwala, S. L. Howell, K.-S. Chen, J. Kang, V. K. Sangwan, S. A. Filippone, R. Turrisi, T. J. Marks, L. J. Lauhon, and M. C. Hersam, “Hybrid, gate-tunable, van der Waals p-n heterojunctions from pentacene and MoS2,” Nano Lett., 16, 497 (2016).

#[330] J. Zhu, X. Liu, M. L. Geier, J. J. McMorrow, D. Jariwala, M. E. Beck, W. Huang, T. J. Marks, and M. C. Hersam, “Layer-by-layer assembled 2D montmorillonite dielectrics for solution-processed electronics,” Adv. Mater., 28, 63 (2016).

2015

[329] B. Kim, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Inkjet printed circuits on flexible and rigid substrates based on ambipolar carbon nanotubes with high operational stability,” ACS Appl. Mater. Interfaces, 7, 27654 (2015).

[328] W. W. C. Chan, S. Glotzer, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, A. Khademhosseini, N. A. Kotov, S.-T. Lee, H. Möhwald, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, H. L. Tierney, and P. S. Weiss, “Grand plans for nano,” ACS Nano, 9, 11503 (2015).

[327] A. J. Mannix, X.-F. Zhou, B. Kiraly, J. D. Wood, D. Alducin, B. D. Myers, X. Liu, B. L. Fisher, U. Santiago, J. R. Guest, M. J. Yacaman, A. Ponce, A.R. Oganov, M. C. Hersam, and N. P. Guisinger, “Synthesis of borophenes: Anisotropic, two-dimensional boron polymorphs,” Science, 350, 1513 (2015).

[326] S. P. Senanayak, V. K. Sangwan, J. J. McMorrow, K. Everaerts, Z. Chen, A. Facchetti, M. C. Hersam, T. J. Marks, and K. S. Narayan, “Self-assembled nanodielectrics for high-speed, low-voltage solution-processed polymer logic circuits,” Adv. Electron. Mater., 1, 1500226 (2015).

[325] H. Jang, J. D. Wood, C. R. Ryder, M. C. Hersam, and D. G. Cahill, “Anisotropic thermal conductivity of exfoliated black phosphorus,” Adv. Mater., 27, 8017 (2015).

[324] J. J. McMorrow, A. R. Walker, V. K. Sangwan, D. Jariwala, E. Hoffman, K. Everaerts, A. Facchetti, M. C. Hersam, and T. J. Marks, “Solution-processed self-assembled nanodielectrics on template-stripped metal substrates,” ACS Appl. Mater. Interfaces, 7, 26360 (2015).

[323] W. J. Hyun, E. B. Secor, G. A. Rojas, M. C. Hersam, L. F. Francis, and C. D. Frisbie, “All-printed, foldable organic thin-film transistors on glassine paper,” Adv. Mater., 27, 7058 (2015).

[322] B. Kiraly, R. M. Jacobberger, A. J. Mannix, G. P. Campbell, M. J. Bedzyk, M. S. Arnold, M. C. Hersam, and N. P. Guisinger, “Electronic and mechanical properties of graphene-germanium interfaces grown by chemical vapor deposition,” Nano Lett., 15, 7414 (2015).

[321] E. B. Secor, B. Y. Ahn, T. Z. Gao, J. A. Lewis, and M. C. Hersam, “Rapid and versatile photonic annealing of graphene inks for flexible printed electronics,” Adv. Mater., 27, 6683 (2015).

[320] M. L. Geier, J. J. McMorrow, W. Xu, J. Zhu, C. H. Kim, T. J. Marks, and M. C. Hersam, “Solution-processed carbon nanotube thin-film complementary static random access memory,” Nature Nanotechnology, 10, 944 (2015).

[319] S. Cui, H. Pu, S. A. Wells, Z. Wen, S. Mao, J. Chang, M. C. Hersam, and J. Chen, “Ultrahigh sensitivity and unique layer-dependent sensing performance of phosphorene-based gas sensors,” Nature Communications, 6, 8632 (2015).

#[318] S. Jang, B. Kim, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Short channel field-effect-transistors with inkjet-printed semiconducting carbon nanotubes,” Small, 11, 5505 (2015).

[317] J. Zhu, J. Kang, J. Kang, D. Jariwala, J. D. Wood, J.-W. T. Seo, K.-S. Chen, T. J. Marks, and M. C. Hersam, “Solution-processed dielectrics based on thickness-sorted two-dimensional hexagonal boron nitride nanosheets,” Nano Lett., 15, 7029 (2015).

[316] E. A. Pozzi, A. B. Zrimsek, C. M. Lethiec, G. C. Schatz, M. C. Hersam, and R. P. Van Duyne, “Evaluating single-molecule Stokes and anti-Stokes SERS for nanoscale thermometry,” J. Phys. Chem. C, 119, 21116 (2015).

[315] I. Chowdhury, N. D. Mansukhani, L. M. Guiney, M. C. Hersam, and D. C. Bouchard, “Aggregation and stability of reduced graphene oxide: Complex roles of divalent cations, pH, and natural organic matter,” Environ. Sci. Technol., 49, 10886 (2015).

[314] X. Wang, N. D. Mansukhani, L. M. Guiney, Z. Ji, C. H. Chang, M. Wang, Y.-P. Liao, T.-B. Song, B. Sun, R. Li, T. Xia, M. C. Hersam, and A. E. Nel, “Differences in the toxicological potential of 2D versus aggregated molybdenum disulfide in the lung,” Small, 11, 5079 (2015).

[313] P. P. Pal, N. Jiang, M. D. Sonntag, N. Chiang, E. T. Foley, M. C. Hersam, R. P. Van Duyne, and T. Seideman, “Plasmon-mediated electron transport in tip-enhanced Raman spectroscopic junctions,” J. Phys. Chem. Lett., 6, 4210 (2015).

[312] M. C. Hersam, S.-T. Lee, A. E. Nel, A. Rogach, J. M. Buriak, and P. S. Weiss, “Big roles for nanocenters,” ACS Nano, 9, 8639 (2015).

[311] B. Kiraly, A. J. Mannix, M. C. Hersam, and N. P. Guisinger, “Graphene-silicon heterostructures at the two-dimensional limit,” Chem. Mater., 27, 6085 (2015).

[310] L. Jaber-Ansari, K. P. Puntambekar, S. Kim, M. Aykol, L. Luo, J. Wu, B. D. Myers, H. Iddir, J. T. Russell, S. J. Saldaña, R. Kumar, M. M. Thackeray, L. A. Curtiss, V. P. Dravid, C. Wolverton, and M. C. Hersam, “Suppressing manganese dissolution from lithium manganese oxide spinel cathodes with single-layer graphene,” Adv. Energy Mater., 5, 1500646 (2015).

[309] R. M. Jacobberger, B. Kiraly, M. Fortin-Deschenes, P. L. Levesque, K. M. McElhinny, G. J. Brady, R. R. Delgado, S. S. Roy, A. Mannix, M. G. Lagally, P. G. Evans, P. Desjardins, R. Martel, M. C. Hersam, N. P. Guisinger, and M. S. Arnold, “Direct oriented growth of armchair graphene nanoribbons on germanium,” Nat. Commun., 6, 8006 (2015).

*[308] M. C. Hersam, “Defects at the two-dimensional limit,” J. Phys. Chem. Lett., 6, 2738 (2015).

[307] K. Rickert, E. A. Pozzi, R. Khanal, M. Onoue, G. Trimarchi, J. E. Medvedeva, M. C. Hersam, R. P. Van Duyne, and K. R. Poeppelmeier, “Selective crystal growth and structural, optical, and electronic studies of Mn3Ta2O8,” Inorg. Chem., 54, 6513 (2015).

[306] A. E. Nel, W. J. Parak, W. C. W. Chan, T. Xia, M. C. Hersam, C. J. Brinker, J. I. Zink, K. E. Pinkerton, D. R. Baer, and P. S. Weiss, “Where are we heading in nanotechnology environmental health and safety and materials characterization?” ACS Nano, 9, 5627 (2015).

[305] B. Kim, J. Park, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Voltage-controlled ring oscillators based on inkjet printed carbon nanotubes and zinc tin oxide,” ACS Appl. Mater. Interfaces, 7, 12009 (2015).

[304] N. Chiang, N. Jiang, D. V. Chulhai, E. A. Pozzi, M. C. Hersam, L. Jensen, T. Seideman, and R. P. Van Duyne, “Molecular-resolution interrogation of a porphyrin monolayer by ultrahigh vacuum tip-enhanced Raman and fluorescence spectroscopy,” Nano Lett., 15, 4114 (2015).

*[303] M. C. Hersam, “The reemergence of chemistry for post-graphene two-dimensional nanomaterials,” ACS Nano, 9, 4661 (2015).

[302] V. K. Sangwan, D. Jariwala, I. S. Kim, K.-S. Chen, T. J. Marks, L. J. Lauhon, and M. C. Hersam, “Gate-tunable memristive phenomena mediated by grain boundaries in single-layer MoS2,” Nature Nanotechnology, 10, 403 (2015).

*[301] T. J. Marks and M. C. Hersam, “Semiconductors grown large and thin,” Nature, 520, 631 (2015).

#[300] A. E. Jakus, E. B. Secor, A. L. Rutz, S. W. Jordan, M. C. Hersam, and R. N. Shah, “Three-dimensional printing of high-content graphene scaffolds for electronic and biomedical applications,” ACS Nano, 9, 4636 (2015).

[299] J. Kang, J. D. Wood, S. A. Wells, J.-H. Lee, X. Liu, K.-S. Chen, and M. C. Hersam, “Solvent exfoliation of electronic-grade, two-dimensional black phosphorus,” ACS Nano, 9, 3596 (2015).

[298] S. L. Howell, D. Jariwala, C.-C. Wu, K.-S. Chen, V. K. Sangwan, J. Kang, T. J. Marks, M. C. Hersam, and L. J. Lauhon, “Investigation of band-offsets at monolayer-multilayer MoS2 junctions by scanning photocurrent microscopy,” Nano Lett., 15, 2278 (2015).

[297] M. Gong, T. A. Shastry, Q. Cui, R. R. Kohlmeyer, K. A. Luck, A. Rowberg, T. J. Marks, M. F. Durstock, H. Zhao, M. C. Hersam, and S. Ren, “Understanding charge transfer in carbon nanotube-fullerene bulk heterojunctions,” ACS Appl. Mater. Interfaces, 7, 7428 (2015).

[296] X. Wang, M. C. Duch, N. Mansukhani, Z. Ji, Y.-P. Liao, M. Wang, H. Zhang, B. Sun, C. H. Chang, R. Li, S. Lin, H. Meng, T. Xia, M. C. Hersam, and A. E. Nel, “Use of a pro-fibrogenic mechanism-based predictive toxicological approach for tiered testing and decision analysis of carbonaceous nanomaterials,” ACS Nano, 9, 3032 (2015).

[295] M. Engel, M. Steiner, J.-W. T. Seo, M. C. Hersam, and P. Avouris, “Hot spot dynamics in carbon nanotube array devices,” Nano Lett., 15, 2127 (2015).

[294] J. D. Lanphere, C. J. Luth, L. M. Guiney, N. D. Mansukhani, M. C. Hersam, and S. L. Walker, “Fate and transport of molybdenum disulfide nanomaterials in sand columns,” Environ. Eng. Sci., 32, 163 (2015).

[293] X. Liu, J. D. Wood, K.-S. Chen, E. Cho, and M. C. Hersam, “In situ thermal decomposition of exfoliated two-dimensional black phosphorus,” J. Phys. Chem. Lett., 6, 773 (2015).

*[292] E. B. Secor and M. C. Hersam, “Emerging carbon and post-carbon nanomaterial inks for printed electronics,” J. Phys. Chem. Lett., 6, 620 (2015).

#[291] W. Qin, M. Gong, X. Chen, T. A. Shastry, R. Sakidja, G. Yuan, M. C. Hersam, M. Wuttig, and S. Ren, “Multiferroicity of carbon-based charge transfer magnets,” Adv. Mater., 27, 734 (2015).

[290] D. Jariwala, V. K. Sangwan, J.-W. T. Seo, W. Xu, J. Smith, C. H. Kim, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Large-area, low-voltage, antiambipolar heterojunctions from solution-processed semiconductors,” Nano Lett., 15, 416 (2015).

[289] W. J. Hyun, E. B. Secor, M. C. Hersam, C. D. Frisbie, and L. F. Francis, “High-resolution patterning of graphene by screen printing with a silicon stencil for highly flexible printed electronics,” Adv. Mater., 27, 109 (2015).

2014

[288] C. K. Song, K. A. Luck, N. Zhou, L. Zeng, H. M. Heitzer, E. F. Manley, S. Goldman, L. X. Chen, M. A. Ratner, M. J. Bedzyk, R. P. H. Chang, M. C. Hersam, and T. J. Marks, “‘Supersaturated’ self-assembled charge-selective interfacial layers for organic solar cells,” J. Am. Chem. Soc., 136, 17762 (2014).

[287] W. C. W. Chan, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, A. Khademhosseini, N. A. Kotov, S.-T. Lee, H. Möhwald, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “A year for nanoscience,” ACS Nano, 8, 11901 (2014).

[286] J. D. Wood, S. A. Wells, D. Jariwala, K.-S. Chen, E. Cho, V. K. Sangwan, X. Liu, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Effective passivation of exfoliated black phosphorus transistors against ambient degradation,” Nano Lett., 14, 6964 (2014).

[285] P. E. Hartnett, A. Timalsina, H. S. S. R. Matte, N. Zhou, X. Guo, W. Zhao, A. Facchetti, R. P. H. Chang, M. C. Hersam, M. R. Wasielewski, and T. J. Marks, “Slip-stacked perylenediimides as an alternative strategy for high efficiency nonfullerene acceptors in organic photovoltaics,” J. Am. Chem. Soc., 136, 16345 (2014).

[284] B. Kim, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Complementary D flip-flops based on inkjet printed single-walled carbon nanotubes and zinc tin oxide,” IEEE Electron Device Lett., 35, 1245 (2014).

[283] J. Kang, J.-W. T. Seo, D. Alducin, A. Ponce, M. J. Yacaman, and M. C. Hersam, “Thickness sorting of two-dimensional transition metal dichalcogenides via copolymer-assisted density gradient ultracentrifugation,” Nature Comm., 5, 5478 (2014).

[282] I. S. Kim, V. K. Sangwan, D. Jariwala, J. D. Wood, S. Park, K.-S. Chen, F. Shi, F. Ruiz-Zepeda, A. Ponce, M. J. Yacaman, V. P. Dravid, T. J. Marks, M. C. Hersam, and L. J. Lauhon, “Influence of stoichiometry on the optical and electrical properties of chemical vapor deposition derived MoS2,” ACS Nano, 8, 10551 (2014).

[281] A. H. Hung, R. J. Holbrook, M. W. Rotz, C. J. Glasscock, N. D. Mansukhani, K. W. MacRenaris, L. M. Manus, M. C. Duch, K. T. Dam, M. C. Hersam, and T. J. Meade, “Graphene oxide enhances cellular delivery of hydrophilic small molecules by co-incubation,” ACS Nano, 8, 10168 (2014).

[280] L. Jaber-Ansari, K. P. Puntambekar, H. Tavassol, H. Yildirim, A. Kinaci, R. Kumar, S. Saldaña, A. A. Gewirth, J. P. Greeley, M. K. Y. Chan, and M. C. Hersam, “Defect evolution in graphene upon electrochemical lithiation,” ACS Appl. Mater. Interfaces, 6, 17626 (2014).

[279] J. D. Emery, V. H. Wheeler, J. E. Johns, M. E. McBriarty, B. Detlefs, M. C. Hersam, D. K. Gaskill, and M. J. Bedzyk, “Structural consequences of hydrogen intercalation of epitaxial graphene on SiC(0001),” Appl. Phys. Lett., 105, 161602 (2014).

[278] S. Jang, B. Kim, M. L. Geier, P. L. Prabhumirashi, M. C. Hersam, and A. Dodabalapur, “Fluoropolymer coatings for improved carbon nanotube transistor device and circuit performance,” Appl. Phys. Lett., 105, 122107 (2014).

[277] M. Gong, T. A. Shastry, Y. Xie, M. Bernardi, D. Jasion, K. A. Luck, T. J. Marks, J. C. Grossman, S. Ren, and M. C. Hersam, “Polychiral semiconducting carbon nanotube-fullerene solar cells,” Nano Lett., 14, 5308 (2014).

*[276] M. D. Sonntag, E. A. Pozzi, N. Jiang, M. C. Hersam, and R. P. Van Duyne, “Recent advances in tip-enhanced Raman spectroscopy,” J. Phys. Chem. Lett., 5, 3125 (2014).

[275] M. C. Hersam and B. J. LeRoy, “Two-dimensional materials,” APL Materials, 2, 092201 (2014).

[274] W. Qin, M. Gong, T. A. Shastry, M. C. Hersam, and S. Ren, “Charge-transfer induced magnetic field effects of nano-carbon heterojunctions,” Sci. Rep., 4, 6126 (2014).

[273] I. Chowdhury, M. C. Duch, N. D. Mansukhani, M. C. Hersam, and D. Bouchard, “Interactions of graphene oxide nanomaterials with natural organic matter and metal oxide surfaces,” Environ. Sci. Technol., 48, 9382 (2014).

#[272] S. Loser, B. Valle, K. A. Luck, C. K. Song, G. Ogien, M. C. Hersam, K. D. Singer, and T. J. Marks, “High-efficiency inverted polymer photovoltaics via spectrally tuned absorption enhancement,” Adv. Energy Mater., 4, 1301938 (2014).

[271] Z. Kominkova, V. Vales, M. C. Hersam, and M. Kalbac, “Towards quantification of the ratio of the single and double wall carbon nanotubes in their mixtures: An in situ Raman spectroelectrochemical study,” Carbon, 78, 366 (2014).

[270] E. A. Pozzi, M. D. Sonntag, N. Jiang, N. Chiang, T. Seideman, M. C. Hersam, and R. P. Van Duyne, “Ultrahigh vacuum tip-enhanced Raman spectroscopy with picosecond excitation,” J. Phys. Chem. Lett., 5, 2657 (2014).

[269] A. J. Mannix, B. Kiraly, B. L. Fisher, M. C. Hersam, and N. P. Guisinger, “Silicon growth at the two-dimensional limit on Ag(111),” ACS Nano, 8, 7538 (2014).

*[268] H. J. Karmel, J. J. Garramone, J. D. Emery, S. Kewalramani, M. J. Bedzyk, and M. C. Hersam, “Self‑assembled organic monolayers on epitaxial graphene with enhanced structural and thermal stability,” Chem. Comm., 50, 8852 (2014).

[267] E. B. Secor, S. Lim, H. Zhang, C. D. Frisbie, L. F. Francis, and M. C. Hersam, “Gravure printing of graphene for large-area flexible electronics,” Advanced Materials, 26, 4533 (2014).

[266] B. Kim, S. Jang, M. L. Geier, P. L. Prabhumirashi, M. C. Hersam, and A. Dodabalapur, “High-speed, inkjet-printed carbon nanotube/zinc tin oxide hybrid complementary ring oscillators,” Nano Lett., 14, 3683 (2014).

[265] A. J. Shearer, J. E. Johns, B. W. Caplins, D. E. Suich, M. C. Hersam, and C. B. Harris, “Electron dynamics of the buffer layer and bilayer graphene on SiC,” Appl. Phys. Lett., 104, 231604 (2014).

#[264] Y.-G. Ha, K. Everaerts, M. C. Hersam, and T. J. Marks, “Hybrid gate dielectric materials for unconventional electronic circuitry,” Acc. Chem. Res., 47, 1019 (2014).

[263] S. Kawashima, J.-W. T. Seo, D. Corr, M. C. Hersam, and S. P. Shah, “Dispersion of CaCO3 nanoparticles by sonication and surfactant treatment for application in fly ash-cement systems,” Materials and Structures, 47, 1011 (2014).

[262] L. Jaber-Ansari, H. Iddir, L. A. Curtiss, and M. C. Hersam, “Influence of electronic type purity on the lithiation of single-walled carbon nanotubes,” ACS Nano, 8, 2399 (2014).

[261] J. M. Klingsporn, N. Jiang, E. A. Pozzi, M. D. Sonntag, D. Chulhai, T. Seideman, L. Jensen, M. C. Hersam, and R. P. Van Duyne, “Intramolecular insight into adsorbate-substrate interactions via low-temperature, ultrahigh-vacuum tip-enhanced Raman spectroscopy,” J. Am. Chem. Soc., 136, 3881 (2014).

[260] D. Jariwala, V. K. Sangwan, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Emerging device applications for semiconducting two-dimensional transition metal dichalcogenides,” ACS Nano, 8, 1102 (2014).

[259] V. K. Sangwan, D. Jariwala, K. Everaerts, J. J. McMorrow, J. He, M. Grayson, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Wafer-scale solution-derived molecular gate dielectrics for low-voltage graphene electronics,” Appl. Phys. Lett., 104, 083503 (2014).

[258] B. Kim, S. Jang, M. L. Geier, P. L. Prabhumirashi, M. C. Hersam, and A. Dodabalapur, “Inkjet printed ambipolar transistors and inverters based on carbon nanotube/zinc tin oxide heterostructures,” Appl. Phys. Lett., 104, 062101 (2014).

[257] A. L. Lipson, K. Puntambekar, D. J. Comstock, X. Meng, M. L. Geier, J. W. Elam, and M. C. Hersam, “Nanoscale investigation of solid electrolyte interphase inhibition on Li-ion battery MnO electrodes via atomic layer deposition of Al2O3,” Chem. Mater., 26, 935 (2014).

[256] I. Chowdhury, M. C. Duch, N. D. Mansukhani, M. C. Hersam, and D. Bouchard, “Deposition and release of graphene oxide nanomaterials using a quartz crystal microbalance,” Environ. Sci. Technol., 48, 961 (2014).

[255] Md. Z. Hossain, M. B. A. Razak, S. Yoshimoto, K. Mukai, T. Koitaya, J. Yoshinobu, H. Sone, S. Hosaka, and M. C. Hersam, “Aqueous-phase oxidation of epitaxial graphene on the silicon face of SiC(0001),” J. Phys. Chem. C, 118, 1014 (2014).

[254] X. Zhang, Z. Yu, C. Wang, D. Zarrouk, J.-W. T. Seo, J. C. Cheng, A. D. Buchan, K. Takei, Y. Zhao, J. W. Ager, J. Zhang, M. Hettick, M. C. Hersam, A. P. Pisano, R. S. Fearing, and A. Javey, “Photoactuators and motors based on carbon nanotubes with selective chirality distributions,” Nature Comm., 5, 2983 (2014).

[253] H. J. Karmel, T. Chien, V. Demers-Carpentier, J. J. Garramone, and M. C. Hersam, “Self-assembled two‑dimensional heteromolecular nanoporous molecular arrays on epitaxial graphene,” J. Phys. Chem. Lett., 5, 270 (2014).

[252] E. C. Mattson, J. E. Johns, K. Pande, R. A. Bosch, S. Cui, M. Gajdardziska-Josifovska, M. Weinert, J. H. Chen, M. C. Hersam, and C. J. Hirschmugl, “Vibrational excitations and low-energy electronic structure of epoxide-decorated graphene,” J. Phys. Chem. Lett., 5, 212 (2014).

2013

[251] W. C. W. Chan, Y. Gogotsi, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, C. R. Kagan, A. Khademhosseini, N. A. Kotov, H. Möhwald, P. A. Mulvaney, A. E. Nel, P. J. Nordlander, W. J. Parak, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “Exciting times for nano,” ACS Nano, 7, 10437 (2013).

#[250] J. M. P. Alaboson, C.-H. Sham, S. Kewalramani, J. D. Emery, J. E. Johns, A. Deshpande, T. Chien, M. J. Bedzyk, J. W. Elam, M. J. Pellin, and M. C. Hersam, “Templating sub-10 nm atomic layer deposited oxide nanostructures on graphene via one-dimensional organic self-assembled monolayers,” Nano Lett., 13, 5763 (2013).

[249] A. Tselev, V. K. Sangwan, D. Jariwala, T. J. Marks, L. J. Lauhon, M. C. Hersam, and S. V. Kalinin, “Near-field microwave microscopy of high-κ oxides grown on graphene with an organic seeding layer,” Appl. Phys. Lett., 103, 243105 (2013).

[248] J. E. Johns, J. M. P. Alaboson, S. Patwardhan, C. R. Ryder, G. C. Schatz, and M. C. Hersam, “Metal oxide nanoparticle growth on graphene via chemical activation with atomic oxygen,” J. Am. Chem. Soc., 135, 18121 (2013).

[247] A. Natan, M. C. Hersam, and T. Seideman, “Insights into graphene functionalization by single atom doping,” Nanotechnology, 24, 505715 (2013).

[246] K. Everaerts, L. Zeng, J. W. Hennek, D. I. Camacho, D. Jariwala, M. J. Bedzyk, M. C. Hersam, and T. J. Marks, “Printed indium gallium zinc oxide transistors. Self-assembled nanodielectric effects on low-temperature combustion growth and carrier mobility,” ACS Appl. Mater. Interfaces, 5, 11884 (2013).

[245] W. Xie, P. L. Prabhumirashi, Y. Nakayama, K. A. McGarry, M. L. Geier, Y. Uragami, K. Mase, C. J. Douglas, H. Ishii, M. C. Hersam, and C. Daniel Frisbie, “Utilizing carbon nanotube electrodes to improve charge injection and transport in bis(trifluoromethyl)-dimethyl-rubrene ambipolar single crystal transistors,” ACS Nano, 7, 10245 (2013).

[244] J. D. Emery, B. Detlefs, H. J. Karmel, L. O. Nyakiti, D. K. Gaskill, M. C. Hersam, J. Zegenhagen, and M. J. Bedzyk, “Chemically resolved interface structure of epitaxial graphene on SiC(0001),” Phys. Rev. Lett., 111, 215501 (2013).

[243] K. A. Luck, T. A. Shastry, S. Loser, G. Ogien, T. J. Marks, and M. C. Hersam, “Improved uniformity in high-performance organic photovoltaics enabled by (3-aminopropyl)triethoxysilane cathode interfacial treatments,” Phys. Chem. Chem. Phys., 15, 20966 (2013).

[242] B. Kiraly, E. V. Iski, A. J. Mannix, B. L. Fisher, M. C. Hersam, and N. P. Guisinger, “Solid-source growth and atomic-scale characterization of graphene on Ag(111),” Nature Comm., 4, 2804 (2013).

[241] D. Jariwala, V. K. Sangwan, C.-C. Wu, P. L. Prabhumirashi, M. L. Geier, T. J. Marks, L. J. Lauhon, and M. C. Hersam, “Gate-tunable carbon nanotube-MoS2 heterojunction p-n diode,” Proc. Nat. Acad. Sci. USA, 110, 18076 (2013).

[240] W. J. Parak, W. C. W. Chan, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, A. Khademhosseini, N. A. Kotov, P. Mulvaney, A. E. Nel, P. J. Nordlander, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “Be critical but fair,” ACS Nano, 7, 8313 (2013).

[239] M. L. Geier, P. L. Prabhumirashi, J. J. McMorrow, W. Xu, J.-W. T. Seo, K. Everaerts, C. H. Kim, T. J. Marks, and M. C. Hersam, “Subnanowatt carbon nanotube complementary logic enabled by threshold voltage control,” Nano Lett., 13, 4810 (2013).

[238] V. K. Sangwan, H. N. Arnold, D. Jariwala, T. J. Marks, L. J. Lauhon, and M. C. Hersam, “Low-frequency electronic noise in single-layer MoS2 transistors,” Nano Lett., 13, 4351 (2013).

[237] H. N. Arnold and M. C. Hersam, “Optoelectronic Applications of Monodisperse Carbon Nanomaterials,” in The Wonder of Nanotechnology: Quantum Optoelectronic Devices and Applications, M. Razeghi. L. Esaki, and K. von Klitzing, Eds., SPIE Press, Bellingham, WA, pp. 795-821 (2013).

[236] B. Kim, S. Jang, P. L. Prabhumirashi, M. L. Geier, M. C. Hersam, and A. Dodabalapur, “Low voltage, high performance inkjet printed carbon nanotube transistors with solution processed ZrO2 gate insulator,” Appl. Phys. Lett., 103, 082119 (2013).

[235] A. H. Hung, M. C. Duch, G. Parigi, M. W. Rotz, L. M. Manus, D. J. Mastarone, K. T. Dam, C. C. Gits, K. W. MacRenaris, C. Luchinat, M. C. Hersam, and T. J. Meade, “Mechanisms of gadographene-mediated proton spin relaxation,” J. Phys. Chem. C, 117, 16263 (2013).

[234] J.-W. T. Seo, N. L. Yoder, T. A. Shastry, J. J. Humes, J. E. Johns, A. A. Green, and M. C. Hersam, “Diameter refinement of semiconducting arc discharge single-walled carbon nanotubes via density gradient ultracentrifugation,” J. Phys. Chem. Lett., 4, 2805 (2013).

[233] Y. J. Shin, E. Ringe, M. L. Personick, M. F. Cardinal, C. A. Mirkin, L. D. Marks, R. P. Van Duyne, and M. C. Hersam, “Centrifugal shape sorting and optical response of polyhedral gold nanoparticles,” Adv. Mater., 25, 4023 (2013).

[232] C.-C. Wu, D. Jariwala, V. K. Sangwan, T. J. Marks, M. C. Hersam, and L. J. Lauhon, “Elucidating the photoresponse of ultrathin MoS2 field-effect transistors by scanning photocurrent microscopy,” J. Phys. Chem. Lett., 4, 2508 (2013).

[231] K. Everaerts, J. D. Emery, D. Jariwala, H. J. Karmel, V. K. Sangwan, P. L. Prabhumirashi, M. L. Geier, J. J. McMorrow, M. J. Bedzyk, A. Facchetti, M. C. Hersam, and T. J. Marks, “Ambient-processable high-capacitance hafnia-organic self-assembled nanodielectrics,” J. Am. Chem. Soc., 135, 8926 (2013).

[230] (FRONTISPIECE) Y. Xie, M. Gong, T. A. Shastry, J. Lohrman, M. C. Hersam, and S. Ren, “Broad-spectral-response nanocarbon bulk-heterojunction excitonic photodetectors,” Adv. Mater., 25, 3433 (2013).

[229] H. J. Karmel and M. C. Hersam, “Room temperature molecular resolution nanopatterning of cyclopentene monolayers on Si(100) via feedback controlled lithography,” Appl. Phys. Lett., 102, 243106 (2013).

[228] I. Chowdhury, M. C. Duch, N. D. Mansukhani, M. C. Hersam, and D. Bouchard, “Colloidal properties and stability of graphene oxide nanomaterials in the aquatic environment,” Environ. Sci. Technol., 47, 6288 (2013).

[227] M. C. Prado, D. Jariwala, T. J. Marks, and M. C. Hersam, “Optimization of graphene dry etching conditions via combined microscopic and spectroscopic analysis,” Appl. Phys. Lett., 102, 193111 (2013).

[226] T. A. Shastry, A. J. Morris-Cohen, E. A. Weiss, and M. C. Hersam, “Probing carbon nanotube-surfactant interactions with two-dimensional DOSY NMR,” J. Am. Chem. Soc., 135, 6750 (2013).

[225] D. Jariwala, V. K. Sangwan, D. J. Late, J. E. Johns, V. P. Dravid, T. J. Marks, L. J. Lauhon, and M. C. Hersam, “Band-like transport in high mobility unencapsulated single-layer MoS2 transistors,” Appl. Phys. Lett., 102, 173107 (2013).

*#[224] A. L. Lipson and M. C. Hersam, “Conductive scanning probe characterization and nanopatterning of electronic and energy materials,” J. Phys. Chem. C, 117, 7953 (2013).

[223] E. B. Secor, P. L. Prabhumirashi, K. Puntambekar, M. L. Geier, and M. C. Hersam, “Inkjet printing of high conductivity, flexible graphene patterns,” J. Phys. Chem. Lett., 4, 1347 (2013).

[222] V. K. Sangwan, D. Jariwala, S. A. Filippone, H. J. Karmel, J. E. Johns, J. M. P. Alaboson, T. J. Marks, L. J. Lauhon, and M. C. Hersam, “Quantitatively enhanced reliability and uniformity of high-κ dielectrics on graphene enabled by self-assembled seeding layers,” Nano Lett., 13, 1162 (2013).

[221] M. Ha, J.-W. T. Seo, P. L. Prabhumirashi, W. Zhang, M. L. Geier, M. J. Renn, C. H. Kim, M. C. Hersam, and C. D. Frisbie, “Aerosol jet printed, low voltage, electrolyte-gated carbon nanotube ring oscillators with sub-5 µs stage delays,” Nano Lett., 13, 954 (2013).

[220] M. E. Regler, H. J. Krenner, A. A. Green, M. C. Hersam, A. Wixforth, and A. Hartschuh, “Controlling excition decay dynamics in semiconducting single-walled carbon nanotubes by surface acoustic waves,” Chem. Phys., 413, 39 (2013).

*[219] D. Jariwala, V. K. Sangwan, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Carbon nanomaterials for electronics, optoelectronics, photovoltaics, and sensing,” Chem. Soc. Rev., 42, 2824 (2013).

[218] E. Sczygelski, V. K. Sangwan, C.-C. Wu, H. N. Arnold, K. Everaerts, T. J. Marks, M. C. Hersam, and L. J. Lauhon, “Extrinsic and intrinsic photoresponse in monodisperse carbon nanotube thin film transistors,” Appl. Phys. Lett., 102, 083104 (2013).

*[217] E. A. Pozzi, M. D. Sonntag, N. Jiang, J. M. Klingsporn, M. C. Hersam, and R. P. Van Duyne, “Tip-enhanced Raman imaging: An emergent tool for probing biology at the nanoscale,” ACS Nano, 7, 885 (2013).

[216] J. Huang, A. L. Ng, Y. Piao, C.-F. Chen, A. A. Green, C.-F. Sun, M. C. Hersam, C. S. Lee, and Y. Wang, “Covalently functionalized double-walled carbon nanotubes combine high sensitivity and selectivity in the electrical detection of small molecules,” J. Am. Chem. Soc., 135, 2306 (2013).

[215] A. Behnam, V. K. Sangwan, X. Zhong, F. Lian, D. Estrada, D. Jariwala, A. J. Hoag, L. J. Lauhon, T. J. Marks, M. C. Hersam, and E. Pop, “High-field transport and thermal reliability of sorted carbon nanotube network devices,” ACS Nano, 7, 482 (2013).

*[214] J. E. Johns and M. C. Hersam, “Atomic covalent functionalization of graphene,” Acc. Chem. Res., 46, 77 (2013).

[213] T. A. Shastry, J.-W. T. Seo, J. J. Lopez, H. N. Arnold, J. Z. Kelter, V. K. Sangwan, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Large-area, electronically monodisperse, aligned single-walled carbon nanotube thin films fabricated by evaporation-driven self-assembly,” Small, 9, 45 (2013).

2012

[212] D. A. Bonnell, J. M. Buriak, W. C. W. Chan, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, N. A. Kotov, A. E. Nel, P. J. Nordlander, R. M. Penner, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “We take it personally,” ACS Nano, 6, 10417 (2012).

[211] D. J. Comstock, J. W. Elam, M. J. Pellin, and M. C. Hersam, “High aspect ratio nanoneedle probes with an integrated electrode at the tip apex,” Rev. Sci. Instrum., 83, 113704 (2012).

*[210] L. Jaber-Ansari and M. C. Hersam, “Solution-processed graphene materials and composites,” MRS Bulletin, 37, 1167 (2012).

[209] I. Chowdhury, M. C. Duch, C. C. Gits, M. C. Hersam, and S. L. Walker, “Impact of synthesis methods on the transport of single walled carbon nanotubes in the aquatic environment,” Environ. Sci. Technol., 46, 11752 (2012).

[208] A. Deshpande, C.-H. Sham, J. M. P. Alaboson, J. M. Mullin, G. C. Schatz, and M. C. Hersam, “Self-assembly and photopolymerization of sub-2 nm one-dimensional organic nanostructures on graphene,” J. Am. Chem. Soc., 134, 16759 (2012).

#[207] N. Jiang, E. T. Foley, J. M. Klingsporn, M. D. Sonntag, N. A. Valley, J. A. Dieringer, T. Seideman, G. C. Schatz, M. C. Hersam, and R. P. Van Duyne, “Observation of multiple vibrational modes in ultrahigh vacuum tip-enhanced Raman spectroscopy combined with molecular-resolution scanning tunneling microscopy,” Nano Letters, 12, 5061 (2012).

[206] A. L. Lipson, S. Chattopadhyay, H. J. Karmel, T. T. Fister, J. D. Emery, V. P. Dravid, M. M. Thackeray, P. A. Fenter, M. J. Bedzyk, and M. C. Hersam, “Enhanced lithiation of doped 6H silicon carbide (0001) via high temperature vacuum growth of epitaxial graphene,” J. Phys. Chem. C, 116, 20949 (2012).

[205] A. L. Antaris, J.-W. T. Seo, R. E. Brock, J. E. Herriman, M. J. Born, A. A. Green, and M. C. Hersam, “Probing and tailoring pH-dependent interactions between block copolymers and single-walled carbon nanotubes for density gradient sorting,” J. Phys. Chem. C, 116, 20103 (2012).

[204] T. P. Tyler, T. A. Shastry, B. J. Leever, and M. C. Hersam, “Narrow diameter distributions of metallic arc discharge single-walled carbon nanotubes via dual-iteration density gradient ultracentrifugation,” Advanced Materials, 24, 4765 (2012).

[203] V. K. Sangwan, R. P. Ortiz, J. M. P. Alaboson, J. D. Emery, M. J. Bedzyk, L. J. Lauhon, T. J. Marks, and M. C. Hersam, “Fundamental performance limits of carbon nanotube thin-film transistors achieved using hybrid molecular dielectrics,” ACS Nano, 6, 7480 (2012).

[202] M. Engel, M. Steiner, R. S. Sundaram, R. Krupke, A. A. Green, M. C. Hersam, and Ph. Avouris, “Spatially resolved electrostatic potential and photocurrent generation in carbon nanotube array devices,” ACS Nano, 6, 7303 (2012).

[201] S. Chattopadhyay, A. L. Lipson, H. J. Karmel, J. D. Emery, T. T. Fister, P. A. Fenter, M. C. Hersam, and M. J. Bedzyk, “In situ X-ray study of the solid electrolyte interphase (SEI) formation on graphene as a model Li-ion battery anode,” Chemistry of Materials, 24, 3038 (2012).

[200] M. Steiner, M. Engel, Y.-M. Lin, Y. Wu, K. Jenkins, D. B. Farmer, J. J. Humes, N. L. Yoder, J.-W. T. Seo, A. A. Green, M. C. Hersam, R. Krupke, and Ph. Avouris, “High-frequency performance of scaled carbon nanotube array field-effect transistors,” Appl. Phys. Lett., 101, 053123 (2012).

[199] S. A. Odom, T. P. Tyler, M. M. Caruso, J. A. Ritchey, M. V. Schulmerich, S. J. Robinson, R. Bhargava, N. R. Sottos, S. R. White, M. C. Hersam, and J. S. Moore, “Autonomic restoration of electrical conductivity using polymer-stabilized carbon nanotube and graphene microcapsules,” Appl. Phys. Lett., 101, 043106 (2012).

[198] J. E. Johns, H. J. Karmel, J. M. P. Alaboson, and M. C. Hersam, “Probing the structure and chemistry of perylenetetracarboxylic dianhydride on graphene before and after atomic layer deposition of alumina,” J. Phys. Chem. Lett., 3, 1974 (2012).

[197] Y. T. Liang, B. K. Vijayan, O. Lyandres, K. A. Gray, and M. C. Hersam, “The effect of dimensionality on the photocatalytic behavior of carbon-titania nanosheet composites: Charge transfer at nanomaterial interfaces,” J. Phys. Chem. Lett., 3, 1760 (2012).

[196] G. N. Ostojic and M. C. Hersam, “Biomolecule-directed assembly of self-supported, nanoporous, conductive, and luminescent single-walled carbon nanotube scaffolds,” Small, 8, 1840 (2012).

[195] X. Wang, T. Xia, M. C. Duch, Z. Ji, H. Zhang, R. Li, B. Sun, S. Lin, H. Meng, Y.-P. Liao, M. Wang, T.-B. Song, Y. Yang, M. C. Hersam, and A. E. Nel, “Pluronic F108 coating decreases the lung fibrosis potential of multiwall carbon nanotubes by reducing lysosomal injury,” Nano Letters, 12, 3050 (2012).

*#[194] Y. T. Liang and M. C. Hersam, “Towards rationally designed graphene-based materials and devices,” Macromolecular Chemistry and Physics, 213, 1091 (2012).

[193] A. R. Hall, J. M. Keegstra, M. C. Duch, M. C. Hersam, and C. Dekker, “Measuring Single-Wall Carbon Nanotubes with Solid-State Nanopores,” Nanopore-Based Technology, Methods in Molecular Biology, Springer, Vol. 870, Ch. 13, pp. 227-239, 2012 (DOI: 10.1007/978-1-61779-773-6_13).

[192] T. P. Tyler, P. A. Lin, Y. Tian, H.-J. Gao, X. P. A. Gao, R. M. Sankaran, and M. C. Hersam, “Centrifugal shape sorting of faceted gold nanoparticles using an atomic plane-selective surfactant,” J. Phys. Chem. Lett., 3, 1484 (2012).

[191] M. G. Reuter, M. C. Hersam, T. Seideman, and M. A. Ratner, “Signatures of cooperative effects and transport mechanisms in conductance histograms,” Nano Letters, 12, 2243 (2012).

[190] J. W. Hennek, Y. Xia, K. Everaerts, M. C. Hersam, A. Facchetti, and T. J. Marks, “Reduced contact resistance in inkjet printed high-performance amorphous indium gallium zinc oxide transistors,” ACS Appl. Mater. Interfaces, 4, 1614 (2012).

[189] Z. S. Metaxa, J.-W. T. Seo, M. S. Konsta-Gdoutos, M. C. Hersam, and S. P. Shah, “Highly concentrated carbon nanotube admixture for nano-fiber reinforced cementitous materials,” Cement and Concrete Composites, 34, 612 (2012).

[188] Md. Z. Hossain, J. E. Johns, K. H. Bevan, H. J. Karmel, Y. T. Liang, S. Yoshimoto, K. Mukai, T. Koitaya, J. Yoshinobu, M. Kawai, A. M. Lear, L. L. Kesmodel, S. L. Tait,and M. C. Hersam, “Chemically homogeneous and thermally reversible oxidation of epitaxial graphene,” Nature Chemistry, 4, 305 (2012).

[187] C. Sire, F. Ardiaca, S. Lepilliet, J.-W. T. Seo, M. C. Hersam, G. Dambrine, H. Happy, and V. Derycke, “Flexible gigahertz transistors derived from solution-based single-layer graphene,” Nano Letters, 12, 1184 (2012).

[186] M. W. Graham, T. R. Calhoun, G. R. Fleming, A. A. Green, M. C. Hersam, and G. R. Fleming, “Two-dimensional electronic spectroscopy reveals the dynamics of phonon-mediated excitation pathways in semiconducting single-walled carbon nanotubes,” Nano Letters, 12, 813 (2012).

[185] D. A. Bonnell, J. M. Buriak, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, N. A. Kotov, P. Nordlander, W. J. Parak, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “Recycling is not always good: The dangers of self-plagiarism,” ACS Nano, 6, 1 (2012).

[184] B. J. Leever, C. A. Bailey, T. J. Marks, M. C. Hersam, and M. F. Durstock, “In situ characterization of lifetime and morphology in operating bulk heterojunction organic photovoltaic devices by impedance spectroscopy,” Advanced Energy Materials, 2, 120 (2012).

 

2011

[183] D. M. Harrah, J. R. Schneck, A. A. Green, M. C. Hersam, L. D. Ziegler, and A. K. Swan, “Intensity-dependent exciton dynamics of (6,5) single-walled carbon nanotubes: Momentum selection rules, diffusion, and nonlinear interactions,” ACS Nano, 5, 9898 (2011).

[182] H. L. Tierney, D. A. Bonnell, J. M. Buriak, J. H. Hafner, P. T. Hammond, M. C. Hersam, A. Javey, N. A. Kotov, P. Nordlander, W. J. Parak, A. L. Rogach, R. E. Schaak, M. M. Stevens, A. T. S. Wee, C. G. Willson, and P. S. Weiss, “ACS Nanoin 2011 and looking forward to 2012,” ACS Nano, 5, 9301 (2011).

[181] M. C. Duch, G. R. Scott Budinger,Y. T. Liang, S. Soberanes, D. Urich, S. E. Chiarella, L. A. Campochiaro, A. Gonzalez, N. S. Chandel, M. C. Hersam, and G. M. Mutlu, “Minimizing oxidation and stable nanoscale dispersion improves the biocompatibility of graphene in the lung,” Nano Letters, 11, 5201 (2011).

#[180] A. L. Lipson, R. S. Ginder, and M. C. Hersam, “Nanoscale in situ characterization of Li-ion battery electrochemistry via scanning ion conductance microscopy,” Advanced Materials, 23, 5613 (2011).

[179] Z. Feng, S. T. Christensen, J. W. Elam, B. Lee, M. C. Hersam, and M. J. Bedzyk, “Thermally induced nanoscale structural and morphological changes for atomic-layer-deposited Pt on SrTiO3(001),” J. Appl. Phys., 110, 102202 (2011).

*#[178] N. L. Yoder, R. Jorn, C.-C. Kaun, T. Seideman, and M. C. Hersam, “Current-driven desorption at the organic molecule-semiconductor interface: Cyclopentene on Si(100),” Current-Driven Phenomena in Nanoelectronics, editor: Tamar Seideman, Pan Stanford Publishing, 2011, Ch. 7 (ISBN: 978-981-4241-50-2).

[177] B. J. Leever, I. P. Murray, M. F. Durstock, T. J. Marks, and M. C. Hersam, “Influence of indium tin oxide surface treatment on spatially-localized photocurrent variations in bulk heterojunction organic photovoltaic devices,” J. Phys. Chem. C, 115, 22688 (2011).

[176] I. P. Murray, S. J. Lou, L. J. Cote, S. Loser, C. J. Kadleck, T. Xu, J. M. Szarko, B. S. Rolczynski, J. E. Johns, J. Huang, L. Yu, L. X. Chen, T. J. Marks, and M. C. Hersam, “Graphene oxide interlayers for robust, high-efficiency organic photovoltaics,” J. Phys. Chem. Lett., 2, 3006 (2011).

#[175] T. P. Tyler, R. E. Brock, H. J. Karmel, T. J. Marks, and M. C. Hersam, “Electronically monodisperse single-walled carbon nanotube thin films as transparent conducting anodes in organic photovoltaic devices,” Advanced Energy Materials, 1, 785 (2011).

[174] M. Kalbac, A. A. Green, M. C. Hersam, and L. Kavan, “Probing charge transfer between shells of double-walled carbon nanotubes sorted by outer-wall electronic type,” Chem. Eur. J., 17, 9806 (2011).

*#[173] J. D. Emery, Q. H.Wang, M. Zarrouati, P. Fenter, M. C. Hersam, and M. J. Bedzyk, “Structural analysis of PTCDA monolayers on epitaxial graphene with ultra-high vacuum scanning tunneling microscopy and high-resolution X-ray reflectivity,” Surf. Sci., 605, 1685 (2011).

[172] Y. T. Liang, B. Vijayan, K. A. Gray, and M. C. Hersam, “Minimizing graphene defects enhances titania nanocomposite-based photocatalytic reduction of CO2 for improved solar fuel production,” Nano Lett., 11, 2865 (2011).

*[171] Q. H. Wang and M. C. Hersam, “Characterization and nanopatterning of organically functionalized graphene with ultrahigh vacuum scanning tunneling microscopy,” MRS Bulletin, 36, 532 (2011).

[170] N. E. Sosa, C. Chen, J. Liu, T. J. Marks, and M. C. Hersam, “Large-scale, nonsubtractive patterning of transparent conducting oxides by ion bombardment,” Appl. Phys. Lett., 99, 022110 (2011).

[169] J. M. P. Alaboson, Q. H. Wang, J. D. Emery, A. L. Lipson, M. J. Bedzyk, J. W. Elam, M. J. Pellin, and M. C. Hersam, “Seeding atomic layer deposition of high-k dielectrics on epitaxial graphene with organic self-assembled monolayers,” ACS Nano, 5, 5223 (2011).

[168] Y. Piao, C.-F. Chen, A. A. Green, H. Kwon, M. C. Hersam, C. S. Lee, G. C. Schatz, Y. Wang, “Optical and electrical properties of inner tubes in outer wall-selectively functionalized double-wall carbon nanotubes,” J. Phys. Chem. Lett., 2, 1577 (2011).

[167] A. R. Hall, J. M. Keegstra, M. C. Duch, M. C. Hersam, and C. Dekker, “Translocation of single-wall carbon nanotubes through solid-state nanopores,” Nano Lett., 11, 2446 (2011).

[166] M. W. Graham, J. Chmeliov, Y.-Z. Ma, H. Shinohara, A. A. Green, M. C. Hersam, G. R. Fleming, and L. Valkunas, “Exciton dynamics in semiconducting carbon nanotubes,” J. Phys. Chem. B, 115, 5201 (2011).

#[165] A. A. Green and M. C. Hersam, “Nearly single-chirality single-walled carbon nanotubes produced via orthogonal iterative density gradient ultracentrifugation,” Advanced Materials, 23, 2185 (2011).

[164] J. M. P. Alaboson, Q. H. Wang, J. A. Kellar, J. Park, J. W. Elam, M. J. Pellin, and M. C. Hersam, “Conductive atomic force microscope nanopatterning of epitaxial graphene on SiC (0001) in ambient conditions,” Advanced Materials, 23, 2181 (2011).

*[163] Q. H. Wang, Md. Z. Hossain, M. A. Walsh, and M. C. Hersam, “Molecular-scale tailoring of graphene surface chemistry via organic functionalization,” ECS Trans., 35, 201 (2011).

[162] J. R. Schneck, A. G. Walsh, A. A. Green, M. C. Hersam, L. D. Ziegler, and A. K. Swan, “Electron correlation effects on the femtosecond dephasing dynamics of E22 excitons in (6,5) carbon nanotubes,” J. Phys. Chem. A, 115, 3917 (2011).

[161] M. D. Irwin, J. D. Servaites, D. B. Buchholz, B. J. Leever, J. Liu, J. D. Emery, M. Zhang, J.-H. Song, M. F. Durstock, A. J. Freeman, M. J. Bedzyk, M. C. Hersam, R. P. H. Chang, M. A. Ratner, and T. J. Marks, “Structural and electronic functionality of NiO interfacial films in bulk heterojunction organic solar cells,” Chem. Mat., 23, 2218 (2011).

[160] M. Ganzhorn, A. Vijayaraghavan, A. A. Green, S. Dehm, A. Voigt, M. C. Hersam, and R. Krupke, “A scalable, CMOS-compatible assembly of ambipolar semiconducting single-walled carbon nanotube devices,“ Adv. Mat., 23, 1734 (2011).

[159] J.-W. T. Seo, A. A. Green, A. L. Antaris, and M. C. Hersam, “High-concentration aqueous dispersions of graphene using nonionic, biocompatible block copolymers,” J. Phys. Chem. Lett., 2, 1004 (2011).

[158] M. C. Roco, C. A. Mirkin, and M. C. Hersam, “Nanotechnology research directions for societal needs in 2020: Summary of international study,” J. Nanopart. Res., 13, 897 (2011).

[157] M. Ganzhorn, A. Vijayaraghavan, S. Dehm, F. Hennrich, A. A. Green, M. Fichtner, A. Voigt, M. Rapp, H. v. Löhneysen, M. C. Hersam, M. M. Kappes, and R. Krupke, “Hydrogen sensing with diameter and chirality sorted carbon nanotubes,” ACS Nano, 5, 1670 (2011).

[156] S. You, M. Mases, I. Dobryden, A. A. Green, M. C. Hersam, and A. V. Soldatov, “Probing structural stability of double-walled carbon nanotubes at high non-hydrostatic pressure by Raman spectroscopy,” High Pressure Research, 31, 186 (2011).

[155] R. W. Newson, A. A. Green, M. C. Hersam, and H. M. van Driel, “Coherent injection and control of ballistic charge currents in single-walled carbon nanotubes and graphite,” Phys. Rev. B, 83, 115421 (2011).

[154] A. A. Green and M. C. Hersam, “Properties and application of double-walled carbon nanotubes sorted by outer-wall electronic type,” ACS Nano, 5, 1459 (2011).

[153] Q. H. Wang and M. C. Hersam, “Nanofabrication of heteromolecular organic nanostructures on epitaxial graphene via room temperature feedback-controlled lithography,” Nano Lett., 11, 589 (2011).

[152] M. C. Hersam, “Nanoscience and nanotechnology in the post-hype era,” ACS Nano, 5, 1 (2011).

[151] M. W. Graham, Y.-Z. Ma, A. A. Green, M. C. Hersam, and G. R. Fleming, “Pure optical dephasing dynamics in semiconducting single-walled carbon nanotubes,” J. Chem. Phys., 134, 034504 (2011).

[150] T. P. Tyler, A.-I. Henry, R. P. Van Duyne, and M. C. Hersam, “Improved monodispersity of plasmonic nanoantennas via centrifugal processing,” J. Phys. Chem. Lett., 2, 218 (2011).

 

2010

[149] Y. T. Liang and M. C. Hersam, “Highly concentrated graphene solutions via polymer enhanced solvent exfoliation and iterative solvent exchange,” J. Am. Chem. Soc., 132, 17661 (2010).

[148] M. Kinoshita, M. Steiner, M. Engel, J. P. Small, A. A. Green, M. C. Hersam, R. Krupke, E. E. Mendez, and Ph. Avouris, “The polarized carbon nanotube thin film LED,” Optics Express, 18, 25738 (2010).

[147] Md. Z. Hossain, M. A. Walsh, and M. C. Hersam, “Scanning tunneling microscopy, spectroscopy, and nanolithography of epitaxial graphene chemically modified with aryl moieties,” J. Am. Chem. Soc., 132, 15399 (2010).

[146] C. Georgi, A. A. Green, M. C. Hersam, and A. Hartschuh, “Probing exciton localization in single-walled carbon nanotubes using high-resolution near-field microscopy,” ACS Nano, 4, 5914 (2010).

[145] W. J. Parak, P. S. Weiss, D. A. Bonnell, J. M. Buriak, J. H. Hafner, P. T. Hammon, M. C. Hersam, N. A. Kotov, R. E. Schaak, and C. G. Wilson, “Virtual issue on nanotoxicology,” ACS Nano, 4, 5513 (2010).

[144] D. J. Comstock, S. T. Christensen, J. W. Elam, M. J. Pellin, and M. C. Hersam, “Synthesis of nanoporous activated iridium oxide films by anodized aluminum oxide templated atomic layer deposition,” Electrochem. Commun., 12, 1543 (2010).

[143] (FRONTISPIECE) D. J. Comstock, S. T. Christensen, J. W. Elam, M. J. Pellin, and M. C. Hersam, “Tuning the composition and nanostructure of Pt/Ir films via anodized aluminum oxide templated atomic layer deposition,” Adv. Funct. Mater., 20, 3099 (2010).

[142] M. Böhmler, N. Hartmann, C. Georgi, F. Hennrich, A. A. Green, M. C. Hersam, and A. Hartschuh, “Enhancing and redirecting carbon nanotube photoluminescence by an optical antenna,” Optics Express, 18, 16443 (2010).

[141] A. L. Antaris, J.-W. T. Seo, A. A. Green, and M. C. Hersam, “Sorting single-walled carbon nanotubes by electronic type using nonionic, biocompatible block copolymers,” ACS Nano, 4, 4725 (2010).

[140] M. Ha, Y. Xia, A. A. Green, W. Zhang, M. J. Renn, C. H. Kim, M. C. Hersam, and C. D. Frisbie, “Printed, sub-3V digital circuits on plastic from aqueous carbon nanotube inks,” ACS Nano, 4, 4388 (2010).

[139] N. E. Sosa, C. Chen, J. Liu, S. Xie, T. J. Marks, and M. C. Hersam, “Nanoscale structure, composition, and charge transport analysis of transparent conducting oxide nanowires written by focused ion beam implantation,” J. Am. Chem. Soc., 132, 7347 (2010).

[138] G. M. Mutlu, G. R. S. Budinger, A. A. Green, D. Urich, S. Soberanes, S. E. Chiarella, G. F. Alheid, D. R. McCrimmon, I. Szleifer, and M. C. Hersam, “Biocompatible nanoscale dispersion of single walled carbon nanotubes minimizes in vivo pulmonary toxicity,” Nano Lett., 10, 1664 (2010).

[137] S. Essig, C. W. Marquardt, A. Vijayaraghavan, M. Ganzhorn, S. Dehm, F. Hennrich, F. Ou, A. A. Green, C. Sciascia, F. Bonaccorso, K.-P. Bohnen, H. v. Löhneysen, M. M. Kappes, P. M. Ajayan, M. C. Hersam, A. C. Ferrari, and R. Krupke, “Phonon-assisted electroluminescence from metallic carbon nanotubes and graphene,” Nano Lett., 10, 1589 (2010).

*[136] Q. H. Wang and M. C. Hersam, “Ultra-high vacuum processing and characterization of chemically functionalized graphene,” ECS Trans., 28, 95 (2010).

*[135] J. Liu and M. C. Hersam, “Recent developments in carbon nanotube sorting and selective growth,” MRS Bulletin, 35, 315 (2010).

#[134] J. A. Kellar, J. M. P. Alaboson, Q. H. Wang, and M. C. Hersam, “Identifying and characterizing epitaxial graphene domains on partially graphitized SiC(0001) surfaces using scanning probe microscopy,” Appl. Phys. Lett., 96, 143103 (2010).

[133] J.-C. Lin, J.-H. Kim, J. A. Kellar, M. C. Hersam, S. T. Nguyen, and M. J. Bedzyk, “Building conjugated organic structures on Si(111) surfaces via microwave-assisted Sonogashira coupling,” Langmuir, 26, 3771 (2010).

[132] M. A. Walsh, S. R. Walter, K. H. Bevan, F. M. Geiger, and M. C. Hersam, “Phenylacetylene one-dimensional nanostructures on the Si(100)-2×1:H surface,” J. Am. Chem. Soc., 132, 3013 (2010).

*[131] M. W. Graham, Y.-Z. Ma, A. A. Green, M. C. Hersam, and G. R. Fleming, “Exciton annihilation and dephasing dynamics in semiconducting single-walled carbon nanotubes,” Proc. of SPIE, 7600, 76001F (2010).

[130] D. J. Comstock, J. W. Elam, M. J. Pellin, and M. C. Hersam, “Integrated ultramicroelectrode-nanopipet probe for concurrent scanning electrochemical microscopy and scanning ion conductance microscopy,” Anal. Chem., 82, 1270 (2010).

[129] M. D. Irwin, J. Liu, B. J. Leever, J. D. Servaites, M. C. Hersam, M. F. Durstock, and T. J. Marks, “Consequences of anode interfacial layer deletion. HCl-treated ITO in P3HT:PCBM-based bulk-heterojunction organic photovoltaic devices,” Langmuir, 26, 2584 (2010).

[128] M. A. Walsh and M. C. Hersam, “Scanning tunneling microscopy study of one-dimensional o-phthalaldehyde chain reactions on the Si(100)-2×1:H surface,” Chem. Comm., 46, 1153 (2010).

[127] M. Kalbac, A. A. Green, M. C. Hersam, and L. Kavan, “Tuning of sorted double-walled carbon nanotubes by electrochemical charging,” ACS Nano, 4, 459 (2010).

[126] G. M. Mutlu, M. C. Hersam, and G. R. Scott Budinger, “Health risks of nanoparticles and nanotechnology,” Air Pollution and Respiratory Effects, editors: Nurdan Kokturk, Hasan Bayram, Kivilcim Oguzulgen, and Sibel Atis, Research Signpost Publishers, 2010, Ch. 4 (ISBN: 978-81-308-0412-5).

*#[125] A. A. Green and M. C. Hersam, “Emerging methods for producing monodisperse graphene solutions,” J. Phys. Chem. Lett., 1, 544 (2010).

 

2009

[124] A. L. Lipson, D. J. Comstock, and M. C. Hersam, “Nanoporous templates and membranes formed by nanosphere lithography and aluminum anodization,” Small, 5, 2807 (2009).

[123] A. A. Green and M. C. Hersam, “Solution phase production of graphene with controlled thickness via density differentiation,” Nano Lett., 9, 4031 (2009).

[122] H. Harutyunyan, T. Gokus, A. A. Green, M. C. Hersam, M. Allegrini, and A. Hartschuh, “Photoluminescence from disorder induced states in individual single-walled carbon nanotubes,” Phys. Stat. Sol. B, 246, 2679 (2009).

[121] S. T. Christensen, B. Lee, Z. Feng, M. C. Hersam, and M. J. Bedzyk, “Hierarchical nanoparticle morphology for platinum supported on SrTiO3 (001): A combined microscopy and X-ray scattering study,” Appl. Surf. Sci., 256, 423 (2009).

*[120] G. N. Ostojic, Y. T. Liang, and M. C. Hersam, “Catalytically active nanocomposites of electronically coupled carbon nanotubes and platinum nanoparticles formed via vacuum filtration,” Nanotechnology, 20, 434019 (2009).

[119] A. V. Naumov, O. A. Kuznetsov, A. R. Harutyunyan, A. A. Green, M. C. Hersam, D. E. Resasco, P. N. Nikolaev, and R. B. Weisman, “Quantifying the semiconducting fraction in single-walled carbon nanotube samples through comparative atomic force and photoluminescence microscopies,” Nano Lett., 9, 3203 (2009).

*[118] A. A. Green, Q. H. Wang, and M. C. Hersam, “Chemically tailored carbon-based nanoelectronic materials and devices,” Proceedings of the 9th IEEE Conference on Nanotechnology, 1, 82 (2009).

[117] N. L. Yoder, J. S. Fakonas, and M. C. Hersam, “Control and characterization of cyclopentene unimolecular dissociation on Si(100) with scanning tunneling microscopy,” J. Am. Chem. Soc., 131, 10059 (2009).

*[116] M. C. Hersam, “Nanotubes sorted using DNA,” Nature, 460, 186 (2009).

[115] L. Nougaret, H. Happy, G. Dambrine, V. Derycke, J.-P. Bourgoin, A. A. Green, and M. C. Hersam, “80 GHz field-effect transistors produced using high purity semiconducting single-walled carbon nanotubes,” Appl. Phys. Lett., 94, 243505 (2009).

[114] S. Wansom, T. O. Mason, M. C. Hersam, D. Drane, G. Light, R. Cormia, S. Stevens, and G. Bodner, “A rubric for post-secondary degree programs in nanoscience and nanotechnology,” International Journal of Engineering Education, 25, 615 (2009).

#[113] Q. H. Wang and M. C. Hersam, “Room-temperature molecular-resolution characterization of self-assembled organic monolayers on epitaxial graphene,” Nature Chemistry, 1, 206 (2009).

[112] H. Harutyunyan, T. Gokus, A. A. Green, M. C. Hersam, M. Allegrini, and A. Hartschuh, “Defect-induced photoluminescence from dark excitonic states in individual single-walled carbon nanotubes,” Nano Lett., 9, 2010 (2009).

*[111] M. C. Hersam, “Processing and properties of monodisperse single-walled and double-walled carbon nanotubes,” Electrochem. Soc., 901, 1143 (2009).

*[110] M. A. Walsh and M. C. Hersam, “Atomic-scale templates patterned by ultrahigh vacuum scanning tunneling microscopy on silicon,” Annu. Rev. Phys. Chem., 60, 193 (2009).

#[109] S. T. Christensen, J. W. Elam, F. A. Rabuffetti, Q. Ma, S. J. Weigand, B. Lee, S. Seifert, P. C. Stair, K. R. Poeppelmeier, M. C. Hersam, and M. J. Bedzyk, “Controlled growth of platinum nanoparticles on strontium titanate nanocubes by atomic layer deposition,” Small, 5, 750 (2009).

[108] J.-C. Lin, J. A. Kellar, J.-H. Kim, N. L. Yoder, K. H. Bevan, S. T. Nguyen, M. C. Hersam, and M. J. Bedzyk, “Atomic-scale x-ray structural analysis of self-assembled monolayers on silicon,” Eur. Phys. J. Special Topics, 167, 33 (2009).

[107] J. A. Kellar, J.-C. Lin, J.-H. Kim, N. L. Yoder, K. H. Bevan, G. Y. Stokes, F. M. Geiger, S. T. Nguyen, M. J. Bedzyk, and M. C. Hersam, “Probing surface-adlayer conjugation on organic-modified Si(111) surfaces with microscopy, scattering, spectroscopy, and density functional theory,” J. Phys. Chem. C, 113, 2919 (2009).

[106] D. Drane, S. Swarat, G. Light, M. C. Hersam, and T. O. Mason, “An evaluation of the efficacy and transferability of a nanoscience module,” J. Nano Ed., 1, 8 (2009).

[105] S. T. Christensen, J. W. Elam, B. Lee, Z. Feng, M. J. Bedzyk, and M. C. Hersam, “Nanoscale structure and morphology of atomic layer deposition platinum on SrTiO3 (001),” Chem. Mater., 21, 516 (2009).

#[104] N. E. Sosa, J. Liu, C. Chen, T. J. Marks, and M. C. Hersam, “Nanoscale writing of transparent conducting oxide features with a focused ion beam,” Adv. Mater., 21, 721 (2009).

#[103] A. A. Green, M. C. Duch, and M. C. Hersam, “Isolation of single-walled carbon nanotube enantiomers by density differentiation,” Nano Research, 2, 69 (2009).

#[102] A. A. Green and M. C. Hersam, “Processing and properties of highly enriched double-wall carbon nanotubes,” Nature Nanotechnology, 4, 64 (2009).

 

2008

[101] M. Engel, J. P. Small, M. Steiner, M. Freitag, A. A. Green, M. C. Hersam, and Ph. Avouris, “Thin film nanotube transistors based on self-assembled, aligned, semiconducting carbon nanotube arrays,” ACS Nano, 2, 2445 (2008).

#[100] M. S. Arnold, J. Suntivich, S. I. Stupp, and M. C. Hersam, “Hydrodynamic characterization of surfactant encapsulated carbon nanotubes using an analytical ultracentrifuge,” ACS Nano, 2, 2291 (2008).

[99] Y.-Z. Ma, M. W. Graham, G. R. Fleming, A. A. Green, and M. C. Hersam, “Ultrafast exciton dephasing in semiconducting single-walled carbon nanotubes,” Phys. Rev. Lett., 101, 217402 (2008).

[98] Y.-Z. Ma, M. W. Graham, G. R. Fleming, A. A. Green, and M. C. Hersam, “Probing exciton dynamics of semiconducting single-walled carbon nanotubes using photon echo spectroscopy,” Ultrafast Phenomena XVI (Springer Series in Chemical Physics), pp. 277-279 (2008).

[97] Q. H. Wang and M. C. Hersam, “Orthogonal self-assembly of interconnected one-dimensional inorganic and organic nanostructures on the Si(100) surface,” J. Am. Chem. Soc., 130, 12896 (2008).

[96] O. Frank, L. Kavan, A. A. Green, M. C. Hersam, and L. Dunsch, “In-situ Vis/NIR spectroelectrochemistry of single-walled carbon nanotubes enriched with (6,5) tubes,” Phys. Stat. Sol. B, 245, 2239 (2008).

[95] H. Qian, C. Georgi, N. Anderson, A. A. Green, M. C. Hersam, L. Novotny, and A. Hartschuh, “Exciton transfer and propagation in carbon nanotubes studied by near-field optical microscopy,” Phys. Stat. Sol. B, 245, 2243 (2008).

[94] H. Qian, P. T. Araújo, C. Georgi, T. Gokus, N. Hartmann, A. A. Green, A. Jorio, M. C. Hersam, L. Novotny, and A. Hartschuh, “Visualizing the local optical response of semiconducting carbon nanotubes to DNA-wrapping,” Nano Lett., 8, 2706 (2008).

[93] L. Kavan, O. Frank, A. A. Green, M. C. Hersam, J. Koltai, V. Zólyomi, J. Kürti, and L. Dunsch, “In-situ Raman spectroelectrochemistry of single-walled carbon nanotubes: Investigation of materials enriched with (6,5) tubes,” J. Phys. Chem. C, 112, 14179 (2008).

[92] G. N. Ostojic, J. R. Ireland, and M. C. Hersam, “Noncovalent functionalization of DNA-wrapped single-walled carbon nanotubes with platinum-based DNA cross-linkers,” Langmuir, 24, 9784 (2008).

[91] M. Engel, J. P. Small, M. Seiner, Y.-M. Lin, A. A. Green, M. C. Hersam, Ph. Avouris, “Top-gated thin film FETs fabricated from arrays of self-aligned semiconducting carbon nanotubes,” Proceedings of the 66th Device Research Conference (IEEE, New York, 2008), p. 149.

#[90] Q. H. Wang and M. C. Hersam, “Atomically resolved charge redistribution for Ga nanocluster arrays on the Si(111)-7×7 surface,” Small, 4, 915 (2008).

[89] C. Georgi, N. Hartmann, T. Gokus, A. A. Green, M. C. Hersam, and A. Hartschuh, “Photoinduced luminescence blinking and bleaching in individual single-walled carbon nanotubes,” Chem. Phys. Chem., 9, 1460 (2008).

*[88] M. C. Hersam, “Progress towards monodisperse single-walled carbon nanotubes,” Nature Nanotechnology, 3, 387 (2008).

[87] J.-H. Kim, J. A. Kellar, M. C. Hersam, and S. T. Nguyen, “Polymer-inorganic nanocomposites from Si-based substrates: Applications of surface-initiated ring-opening metathesis polymerization,” ACS Symp. Ser., 996, 303 (2008).

*[86] M. C. Hersam, “Tuning the electrical and optical properties of monodisperse carbon-based nanomaterials,” Electrochem. Soc., 801, 974 (2008).

[85] A. A. Green and M. C. Hersam, “Colored semitransparent conductive coatings consisting of monodisperse metallic single-walled carbon nanotubes,” Nano Lett., 8, 1417 (2008).

[84] H. Qian, C. Georgi, N. Anderson, A. A. Green, M. C. Hersam, L. Novotny, and A. Hartschuh, “Exciton energy transfer in pairs of single-walled carbon nanotubes,” Nano Lett., 8, 1363 (2008).

[83] G. H. Chan, M.-L. Liu, L.-D. Chen, F.-Q. Huang, D. E. Bugaris, D. M. Wells, J. R. Ireland, M. C. Hersam, R. P. Van Duyne, and J. A. Ibers, “Syntheses, crystal structures, and physical properties of La5Cu6O4S7 and La5Cu6.33O4S 7,” Inorg. Chem., 47, 4368 (2008).

[82] T. Gokus, A. Hartschuh, H. Harutyunyan, M. Allegrini, F. Hennrich, M. Kappes, A. A. Green, M. C. Hersam, P. T. Araujo, and A. Jorio, “Exciton decay dynamics in individual carbon nanotubes at room temperature,” Appl. Phys. Lett., 92, 153116 (2008).

[81] N. P. Guisinger, N. L. Yoder, S. P. Elder, and M. C. Hersam, “Subnanometer imaging of adsorbate-induced electronic structure perturbation on silicon surfaces,” J. Phys. Chem. C, 112, 2116 (2008).

[80] B. J. Leever, M. F. Durstock, M. D. Irwin, A. W. Hains, T. J. Marks, L. S. C. Pingree, and M. C. Hersam, “Spatially resolved photocurrent mapping of operating organic photovoltaic devices using atomic force photovoltaic microscopy,” Appl. Phys. Lett., 92, 013302 (2008).

[79] S. Jin, Y. Yang, J. E. Medvedeva, L. Wang, S. Li, N. Cortes, J. R. Ireland, A. W. Metz, J. Ni, M. C. Hersam, A. J. Freeman, and T. J. Marks, “Tuning the properties of transparent oxide conductors. Dopant ion size and electronic structure effects on CdO-based transparent conducting oxides. Ga- and In doped CdO thin films grown by MOCVD,” Chem. Mater., 20, 220 (2008).

 

2007

[78] M. J. Schmitz, C. R. Kinser, N. E. Cortes, and M. C. Hersam, “Ambient atomic force microscope nanoscale oxidation of hydrogen-passivated silicon with conductive diamond coated probes,” Small, 3, 2053 (2007).

*[77] A. A. Green and M. C. Hersam, “Ultracentrifugation of single-walled carbon nanotubes,” Materials Today, 10, 59 (2007).

[76] L. S. C. Pingree, M. T. Russell, B. J. Scott, T. J. Marks, and M. C. Hersam, “Probing individual nanoscale organic light-emitting diodes with atomic force electroluminescence microscopy and bridge-enhanced nanoscale impedance microscopy,” Organic Electronics, 8, 465 (2007).

[75] L. S. C. Pingree, M. J. Schmitz, D. E. Kramer, and M. C. Hersam, “Laser assisted field induced oxide nanopatterning of hydrogen passivated silicon surfaces,” Appl. Phys. Lett., 91, 073110 (2007).

[74] J. W. Elam, A. V. Zinovev, M. J. Pellin, D. J. Comstock, and M. C. Hersam, “Nucleation and growth of noble metals on oxide surfaces using atomic layer deposition,” ECS Trans., 3, 271 (2007).

*[73] M. C. Hersam, “Isolating monodisperse single-walled carbon nanotubes via density gradient ultracentrifugation,” Electrochem. Soc., 701, 1042 (2007).

*[72] T. Hertel, Z. Zhu, J. Crochet, M. S. Arnold, M. C. Hersam, and D. Resasco, “Exciton dynamics in carbon nanotubes,” Electrochem. Soc., 701, 1041 (2007).

[71] S. Schneider, J. R. Ireland, M. C. Hersam, and T. J. Marks, “Copper(I) tert-butylthiolato clusters as single-source precursors for high-quality chalcocite thin films: Film growth and microstructure control,” Chem. Mater., 19, 2780 (2007).

[70] Z. Zhu, J. Crochet, M. S. Arnold, M. C. Hersam, H. Ulbricht, D. Resasco, and T. Hertel, “Pump-probe spectroscopy of exciton dynamics in (6,5) carbon nanotubes,” J. Phys. Chem. C, 111, 3831 (2007).

[69] L. S. C. Pingree, M. T. Russell, T. J. Marks, and M. C. Hersam, “Monitoring interface traps in operating organic light-emitting diodes using impedance spectroscopy,” Thin Solid Films, 515, 4783 (2007).

[68] R. Basu, J.-C. Lin, C.-Y. Kim, M. J. Schmitz, N. L. Yoder, J. A. Kellar, M. J. Bedzyk, and M. C. Hersam, “Structural characterization of 4-bromostyrene self-assembled monolayers on Si(111),” Langmuir, 23, 1905 (2007).

*#[67] N. P. Guisinger, S. P. Elder, N. L. Yoder, and M. C. Hersam, “Ultra-high vacuum scanning tunneling microscopy investigation of free radical adsorption to the Si(111)-7×7 surface,” Nanotechnology, 18, 044011 (2007).

 

2006

*[66] E. T. Foley and M. C. Hersam, “Assessing the need for nanotechnology education reform in the United States,” Nanotechnology Law and Business, 3, 467 (2006).

[65] N. L. Yoder, N. P. Guisinger, M. C. Hersam, R. Jorn, C.-C. Kaun, and T. Seideman, “Quantifying desorption of saturated hydrocarbons from silicon with quantum calculations and scanning tunneling microscopy,” Phys. Rev. Lett., 97, 187601 (2006).

[64] M. S. Arnold, A. A. Green, J. F. Hulvat, S. I. Stupp, and M. C. Hersam, “Sorting carbon nanotubes by electronic structure via density differentiation,” Nature Nanotechnology, 1, 60 (2006).

*[63] M. C. Hersam, “Electronic and optical devices based on purified biofunctionalized carbon nanotubes,” Electrochem. Soc., 602, 1175 (2006).

*[62] M. C. Hersam, D. Y. Li, T. S. Fisher, W. R. Ashurst, R. D. Malucci, and B. Rickett, “Applications and properties of nanomaterials in electrical contacts,” Proceedings of the IEEE Holm Conference on Electrical Contacts, 52, 251 (2006).

*[61] M. S. Arnold, S. I. Stupp, and M. C. Hersam, “Optimizing the purification of biofunctionalized carbon nanotubes,” Proceedings of the 2006 ASME International Conference on Manufacturing Science and Engineering, 1, 21046 (2006).

[60] G. H. Chan, B. Deng, M. Bertoni, J. R. Ireland, M. C. Hersam, T. O. Mason, R. P. Van Duyne, and J. A. Ibers, “Syntheses, structures, physical properties, and theoretical studies of CeMxOS (M = Cu, Ag; x ~ 0.8) and CeAgOS,” Inorg. Chem., 45, 8264 (2006).

[59] L. S. C. Pingree, M. T. Russell, T. J. Marks, and M. C. Hersam, “Negative capacitance in organic light-emitting diodes: Implications for display applications,” Proceedings of the 64th Device Research Conference (IEEE, New York, 2006), p. 143.

*[58] M. C. Hersam, “Monitoring and analyzing nonlinear dynamics in atomic force microscopy,” Small, 2, 1122 (2006).

[57] L. S. C. Pingree, M. T. Russell, T. J. Marks, and M. C. Hersam, “Field dependent negative capacitance in small-molecule organic light-emitting diodes,” J. Appl. Phys., 100, 044502 (2006).

#[56] M. T. Russell, L. S. C. Pingree, M. C. Hersam, and T. J. Marks, “Micro-scale features and surface chemical functionality patterned by electron beam lithography. A novel route to poly(dimethylsiloxane) (PDMS) stamp fabrication,” Langmuir, 22, 6712 (2006).

*[55] R. Basu, C. R. Kinser, J. D. Tovar, and M. C. Hersam, “Bromine functionalized molecular adlayers on hydrogen passivated silicon surfaces,” Chem. Phys., 326, 144 (2006).

[54] C.-Y. Kim, J. W. Elam, M. J. Pellin, D. Goswami, S. T. Christensen, M. C. Hersam, P. C. Stair, and M. J. Bedzyk, “Imaging of atomic layer deposited (ALD) tungsten monolayers on α-TiO2(110) by X-ray standing wave Fourier inversion,” J. Phys. Chem. B, 110, 12616 (2006).

[53] C. R. Kinser, M. J. Schmitz, and M. C. Hersam, “Kinetics and mechanism of atomic force microscope field induced oxidation on hydrogen-passivated silicon in inert organic solvents,” Adv. Mater., 18, 1377 (2006).

*[52] N. L. Yoder and M. C. Hersam, “Probing the performance and reliability of silicon-based molecular electronic devices with ultra-high vacuum scanning tunneling microscopy,” Proceedings of the 3rd Annual Foundations of Nanoscience Conference, 1, 80 (2006).

 

2005

[51] L. S. C. Pingree and M. C. Hersam, “Bridge enhanced nanoscale impedance microscopy,” Appl. Phys. Lett., 87, 233117 (2005).

[50] T. Rakshit, G.-C. Liang, A.W. Ghosh, M. C. Hersam, and S. Datta, “Molecules on silicon: Self-consistent first-principles theory and calibration to experiments,” Phys. Rev. B, 72, 125305 (2005).

[49] R. Basu, J. D. Tovar, and M. C. Hersam, “Scanning tunneling microscopy study of single molecule motion on the Si(100)-2×1 surface,” J. Vac. Sci. Technol. B, 23, 1785 (2005).

[48] M. E. Greene, A. N. Chiaramonti, S. T. Christensen, L. X. Cao, M. J. Bedzyk, and M. C. Hersam, “Controlled nanoscale morphology of hematite (0001) surfaces grown by chemical vapor transport,” Adv. Mater., 17, 1765 (2005).

*#[47] N. P. Guisinger, N. L. Yoder, and M. C. Hersam, “Probing charge transport at the single molecule level on silicon by using cryogenic ultra-high vacuum scanning tunneling microscopy,” Proc. Nat. Acad. Sci. USA, 102, 8838 (2005).

[46] T. J. Marks, Y. Yang, S. Jin, J. E. Medvedeva, J. R. Ireland, A. W. Metz, J. Ni, M. C. Hersam, and A. J. Freeman, “CdO as the archetypical transparent conducting oxide. Systematics of dopant ionic radius and electronic structure effects on charge transport and band structure,” J. Am. Chem. Soc., 127, 8796 (2005).

[45] M. S. Arnold, M. O. Guler, M. C. Hersam, and S. I. Stupp, “Encapsulation of carbon nanotubes by self-assembling peptide amphiphiles,” Langmuir, 21, 4705 (2005).

[44] M. S. Arnold, S. I. Stupp, and M. C. Hersam, “Enrichment of single-walled carbon nanotubes by diameter in density gradients,” Nano Lett., 5, 713 (2005).

[43] L. S. C. Pingree, E. F. Martin, K. R. Shull, and M. C. Hersam, “Nanoscale impedance microscopy: A characterization tool for nanoelectronic devices and circuits,” IEEE T. Nanotechnol., 4, 255 (2005).

#[42] J. C. Stendahl, E. R. Zubarev, M. S. Arnold, M. C. Hersam, H.-J. Sue, and S. I. Stupp, “Structural modifications to polystyrene via self-assembling molecules,” Adv. Funct. Mater., 15, 487 (2005).

[41] L. S. C. Pingree, B. J. Scott, M. T. Russell, T. J. Marks, and M. C. Hersam, “Negative capacitance in organic light-emitting diodes,” Appl. Phys. Lett., 86, 073509 (2005).

[40] C. R. Kinser, M. J. Schmitz, and M. C. Hersam, “Conductive atomic force microscope nanopatterning of hydrogen passivated silicon in inert organic solvents,” Nano Lett., 5, 91 (2005).

[39] K. R. Shull, E. F. Martin, P. L. Drzal, M. C. Hersam, A. Markowitz, and R. McSwain, “Adhesive transfer of thin viscoelastic films,” Langmuir, 21, 178 (2005).

 

2004

[38] A. S. Baluch, N. P. Guisinger, and M. C. Hersam, “Negative differential resistance through individual organic molecules bound to the Si(111)-7×7 surface,” TMS Lett., 1, 125 (2004).

[37] L. S. C. Pingree, M. M. Kern, B. J. Scott, T. J. Marks, and M. C. Hersam, “Quantum efficiency of micron scaled organic light emitting diodes using atomic force electroluminescence microscopy,” TMS Lett., 1, 127 (2004).

[36] E. T. Foley, N. L. Yoder, N. P. Guisinger, and M. C. Hersam, “Cryogenic variable temperature ultra-high vacuum scanning tunneling microscope for single molecule studies on silicon surfaces,” Rev. Sci. Instrum., 75, 5280 (2004).

*[35] M. E. Greene, C. R. Kinser, D. E. Kramer, L. S. C. Pingree, and M. C. Hersam, “Application of scanning probe microscopy to the characterization and fabrication of hybrid nanomaterials,” Microscopy Research and Technique, 64, 415 (2004).

*[34] N. P. Guisinger, R. Basu, M. E. Greene, A. S. Baluch, and M. C. Hersam, “Characterization of silicon-based molecular resonant tunneling diodes with scanning tunneling microscopy,” Proceedings of the 62nd Device Research Conference(IEEE, New York, 2004), p. 195.

#[33] R. Basu, N. P. Guisinger, M. E. Greene, and M. C. Hersam, “Room temperature nanofabrication of atomically registered heteromolecular organosilicon nanostructures using multistep feedback controlled lithography,” Appl. Phys. Lett., 85, 2619 (2004).

[32] H. Jin, C. R. Kinser, P. A. Bertin, D. E. Kramer, J. A. Libera, M. C. Hersam, S. T. Nguyen, and M. J. Bedzyk, “X-ray studies of self-assembled monolayers grown on hydrogen-terminated Si(111),” Langmuir, 20, 6252 (2004).

[31] L. S. C. Pingree, M. C. Hersam, M. M. Kern, B. J. Scott, and T. J. Marks, “Spatially resolved electroluminescence of operating organic light-emitting diodes using conductive atomic force microscopy,” Appl. Phys. Lett., 85, 344 (2004).

*[30] M. S. Arnold, S. Lan, S. C. Cruz, J. E. Sharping, S. I. Stupp, P. Kumar, and M. C. Hersam, “Optical absorption and transient photobleaching in solutions of surfactant encapsulated and DNA-wrapped single-walled carbon nanotubes,” Proc. of SPIE, 5359, 376 (2004).

*[29] M. C. Hersam and R. G. Reifenberger, “Charge transport through molecular junctions,” MRS Bull., 29, 385 (2004).

*#[28] N. P. Guisinger, R. Basu, M. E. Greene, A. S. Baluch, and M. C. Hersam, “Observed suppression of room temperature negative differential resistance in organic monolayers on Si(100),” Nanotechnology, 15, S452 (2004).

[27] M. E. Greene, N. P. Guisinger, R. Basu, A. S. Baluch, and M. C. Hersam, “Nitroxyl free radical binding to Si(100): A combined STM and computational modeling study,” Surface Science, 559, 16 (2004).

[26] A. S. Baluch, N. P. Guisinger, R. Basu, E. T. Foley, and M. C. Hersam, “Atomic-level robustness of the Si(100)-2´1:H surface following liquid phase chemical treatments in atmospheric pressure environments,” J. Vac. Sci. Technol. A, 22, L1 (2004).

[25] M. W. Such, D. E. Kramer, and M. C. Hersam, “Reproducible lateral force microscopy measurements for quantitative comparisons of the frictional and chemical properties of nanostructures,” Ultramicroscopy, 99, 189 (2004).

[24] M. C. Hersam, M. Luna, and G. Light, “Implementation of interdisciplinary group learning and peer assessment in a nanotechnology engineering course,” Journal of Engineering Education, 93, 49 (2004).

#[23] N. P. Guisinger, M. E. Greene, R. Basu, A. S. Baluch, and M. C. Hersam, “Room temperature negative differential resistance through individual molecules on silicon surfaces,” Nano Lett., 4, 55 (2004).

[22] B. Wang, X. Zheng, J. Michl, E. T. Foley, M. C. Hersam, A. Bilić, M. J. Crossley, J. R. Reimers, and N. S. Hush, “An azanorbornadiene anchor for molecular-level construction on silicon(100),” Nanotechnology, 15, 324 (2004).

 

2003

[21] N. P. Guisinger, R. Basu, A. S. Baluch, and M. C. Hersam, “Molecular electronics on silicon: An ultra-high vacuum scanning tunneling microscopy study,” Ann. N. Y. Acad. Sci., 1006, 227 (2003).

[20] M. S. Arnold, J. E. Sharping, S. I. Stupp, P. Kumar, and M. C. Hersam, “Band gap photobleaching in isolated single-walled carbon nanotubes,” Nano Lett., 3, 1549 (2003).

*[19] M. C. Hersam and Y. W. Chung, “Detecting elusive surface atoms with atomic force microscopy,” Proc. Natl. Acad. Sci. USA, 100, 12531 (2003).

*[18] M. S. Arnold, S. I. Stupp, and M. C. Hersam, “Tuning the optical properties of carbon nanotube solutions using amphiphilic self-assembly,” Proc. of SPIE, 4999, 238 (2003).

*[17] A. S. Baluch, R. Basu, N. P. Guisinger, C. R. Kinser, D. E. Kramer, M. W. Such, and M. C. Hersam, “Nanoscale control of friction and chemistry on silicon surfaces,” Mat. Res. Soc. Symp. Proc., 750, Y9.1.1 (2003).

[16] Y. Koide, M. W. Such, R. Basu, G. Evmenenko, J. Cui, P. Dutta, M. C. Hersam, and T. J. Marks, “Hot microcontact printing for patterning ITO surfaces. Methodology, morphology, microstructure, and OLED charge injection barrier imaging,” Langmuir, 19, 86 (2003).

 

2002

*[15] M. C. Hersam, “Single molecule sensing, characterization, and actuation,” Proceedings of the 6th World Multiconference on Systemics, Cybernetics, and Informatics, 17, 338 (2002).

[14] M. C. Hersam, N. P. Guisinger, J. Lee, K. Cheng, and J. W. Lyding, “Variable temperature study of the passivation of dangling bonds at Si(100)-2×1 reconstructed surfaces with H and D,” Appl. Phys. Lett., 80, 201 (2002).

 

2001

[13] E. F. Fabbroni, K. R. Shull, and M. C. Hersam, “Adhesive and mechanical properties of soft nanocomposites: Model studies with blended latex films,” J. Polym. Sci. Polym. Phys., 39, 3090 (2001).

[12] P. G. Collins, M. C. Hersam, M. Arnold, R. Martel, and Ph. Avouris, “Current saturation and electrical breakdown in multiwalled carbon nanotubes,” Phys. Rev. Lett., 86, 3128 (2001).

[11] M. C. Hersam, N. P. Guisinger, J. W. Lyding, D. S. Thompson, and J. S. Moore, “Atomic-level study of the robustness of the Si(100)-2´1:H surface following exposure to ambient conditions,” Appl. Phys. Lett., 78, 886 (2001).

 

2000

*[10] M. C. Hersam, N. P. Guisinger, and J. W. Lyding, “Assessing the impact of fundamental scanning tunneling microscopy studies on VLSI technology,” Proceedings of the 9th NASA Symposium on VLSI Design, 1, 5.1.1 (2000).

[9] M. C. Hersam, J. Lee, N. P. Guisinger, and J. W. Lyding, “Implications of atomic-level manipulation on the Si(100) surface: From enhanced CMOS reliability to molecular nanoelectronics,” Superlattices and Microstructures, 27, 583 (2000).

[8] M. C. Hersam, N. P. Guisinger, and J. W. Lyding, “Silicon-based molecular nanotechnology,” Nanotechnology, 11, 70 (2000).

[7] M. C. Hersam, N. P. Guisinger, and J. W. Lyding, “Isolating, imaging, and electrically characterizing individual organic molecules on the Si(100) surface with the scanning tunneling microscope,” J. Vac. Sci. Technol. A, 18, 1349 (2000).

[6] Ph. Avouris, R. Martel, H. Ikeda, M. C. Hersam, H. R. Shea, and A. Rochefort, “Electrical properties of carbon nanotubes: spectroscopy, localization, and electrical breakdown,” Science and Application of Nanotubes, editors: David Tománek and Richard Enbody, Kluwer Academic Publishers, 2000, p. 223 (ISBN: 0-306-46372-5).

 

1996-1999

[5] M. C. Hersam, G. C. Abeln, and J. W. Lyding, “An approach for efficiently locating and electrically contacting nanostructures fabricated via UHV-STM lithography on Si(100),” Microelectronic Engineering, 47, 235 (1999).

[4] G. C. Abeln, M. C. Hersam, D. S. Thompson, S.-T. Hwang, H. Choi, J. S. Moore, and J. W. Lyding, “Approaches to nanofabrication on Si(100) surfaces: Selective area chemical vapor deposition of metals and selective chemisorption of organic molecules,” J. Vac. Sci. Technol. B, 16 , 3874 (1998).

[3] J. W. Lyding, K. Hess, G. C. Abeln, D. S. Thompson, J. S. Moore, M. C. Hersam, E. T. Foley, J. Lee, Z. Chen, S.-T. Hwang, H. Choi, Ph. Avouris, and I. C. Kiziyalli, “UHV STM nanofabrication and hydrogen/deuterium desorption from silicon surfaces: implications for CMOS technology,” Appl. Surf. Sci., 132, 221 (1998).

[2] M. C. Hersam, A. C. F. Hoole, S. J. O’Shea, and M. E. Welland, “Potentiometry and repair of electrically stressed nanowires using atomic force microscopy,” Appl. Phys. Lett., 72, 915 (1998).

[1] S. Ahuja, M. C. Hersam, C. Ross, H. T. Chien, and A. C. Raptis, “A micromachined surface acoustic wave sensor for detecting inert gases,” Proceedings of the 1996 IEEE Ultrasonics Symposium, 1, 435 (1996).