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Electronic Devices and Transfer Printing Methods

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136. Tunable Phonon Polariton Hybridization in a van der Waals Hetero-Bicrystal, L. Wehmeier*,#, S.-J. Yu#, X. Chen, R. A. Mayer, L. Xiong, H. Yao, Y. Jiang, J. Hu, E. Janzen, J. H. Edgar, X. L. Zheng, T. F. Heinz, D. N. Basov, C. C. Homes, G. Hu, G. L. Carr, M. Liu*, and J. A. Fan*, Adv. Mater. (2024)

 130. Hyperbolic Polaritonic Rulers Based on van der Waals α-MoO3 Waveguides and Resonators, S. Yu, H. Yao, G. Hu, Y. Jiang, X. L. Zheng, S. Fan, T. F. Heinz, and J. A. Fan*, ACS Nano (2023)

112. Ultrahigh-Quality Infrared Polaritonic Resonators Based on Bottom-Up-Synthesized van der Waals Nanoribbons, S. J. Yu*, Y. Jiang*, J. A. Roberts, M. A. Huber, H. Yao, X. Shi, H. A. Bechtel, S. N. G. Corder, T. F. Heinz, X. L. Zheng and J. A. Fan, ACS Nano 16, 2, 3027–3035 (2022)

 85. Sub-Thermionic Steep Switching in Hole-Doped WSe2 Transistors, C. J. McClellan, E. Yalon, L. Cai, S. Suryavanshi, X. L. Zheng and E. Pop, 2018 76th Device Research Conference 18058326 (2018)

83. Wafer-recyclable, environment-friendly transfer printing for large-scale thin-film nanoelectronics, D. S. Wie*, Y. Zhang*, M. K. Kim, B. Kim, S. Park, Y. Kim, P. P. Irazoqui, X. L. Zheng, B. Xu, and C. H. Lee, Proc. Natl. Acad. Sci. U.S.A. 115, 31, 7236–7244 (2018)

65. Three-Dimensional Hetero-Integration of Faceted GaN on Si Pillars for Efficient Light Energy Conversion Devices, D. R. Kim, C. H. Lee, I. S. Cho, H. Jang, M. Jeon and X. L. Zheng, ACS Nano 11, 7, 6853–6859 (2017)

48. (Review) Transfer Printing Methods for Flexible Thin Film Solar Cells: Basic Concepts and Working Principles, C.H. Lee, D.R. Kim and X.L. Zheng, ACS Nano 8, 9, 8746–8756 (2014)

41. Peel-and-Stick: Mechanism Study for Efficient Fabrication of Flexible/Transparent Thin-film Electronics, C. H. Lee, J. H. Kim, C. Zou, I. S. Cho, J. M. Weisse, W. Nemeth, Q. Wang, A. C. Duin, T. S. Kim and X. L. Zheng, Sci. Rep. 3, 2917 (2013)

40. Electro-Assisted Transfer of Vertical Silicon Wire Arrays Using a Sacrificial Porous Silicon Layer, J. M. Weisse, C. H. Lee, D. R. Kim, L. Cai, P. M. Rao, and X. L. Zheng, Nano Lett. 13 (9) 4362–4368 (2013)

33. Peel-and-Stick: Fabricating Thin Film Solar Cell on Universal Substrates, C. H. Lee, D. R. Kim, I. S. Cho, N. William, Q. Wang and X. L. Zheng, Sci. Rep. 2, 1000 (2012)

29. Fabrication of Flexible and Vertical Silicon Nanowire Electronics, J. M. Weisse, C. H. Lee, D. R. Kim, and X. L. Zheng, Nano Lett. 12, 3339–3343 (2012)

26. Fabrication of Nanowire Electronics on Nonconventional Substrates by Water-Assisted Transfer Printing Method, C. H. Lee, D. R. Kim, and X. L. Zheng, Nano Lett. 11, 3435–3439 (2011)

22. Vertical Transfer of Uniform Silicon Nanowire Arrays via Crack Formation, J. M. Weisse, D. R. Kim, C. H. Lee, and X. L. Zheng, Nano Lett. 11, 1300–1305 (2011)

17. Orientation-Controlled Alignment of Axially Modulated pn Silicon Nanowires, C.H. Lee, D.R. Kim, and X. L. Zheng, Nano Lett. 10, 5116–5122 (2010)

15. Fabricating nanowire devices on diverse substrates by simple transfer-printing methods, C. H. Lee, D. R. Kim, and X. L. Zheng, Proc. Natl. Acad. Sci. U.S.A. 107, 9950–9955 (2010)

14. Direct Growth of Nanowire Logic Gates and Photovoltaic Devices, D. R. Kim, C. H. Lee, and X. L. Zheng, Nano Lett. 10, 1050–1054 (2010)

11. Probing Flow Velocity with Silicon Nanowire Sensors, D. R. Kim, C. H. Lee, and X. L. Zheng, Nano Lett. 9, 1984–1988 (2009)

10. Numerical Characterization and Optimization of the Microfluidics for Nanowire Biosensors, D. R. Kim, and X. L. Zheng, Nano Lett. 8, 3233–3237 (2008)

9. Single and Tandem Axial p-i-n Nanowire Photovoltaic Devices, T. J. Kempa, B. Tian, D. R. Kim, J. Hu, X. L. Zheng, and C. M. Lieber, Nano Lett. 8, 3456–3460 (2008)