ZnO nanowire UV photodetectors with high internal gain C Soci, A Zhang, B Xiang, SA Dayeh, DPR Aplin, J Park, XY Bao, YH Lo, ... Nano letters 7 (4), 1003-1009, 2007 | 2940 | 2007 |
Anisotropic swelling and fracture of silicon nanowires during lithiation XH Liu, H Zheng, L Zhong, S Huang, K Karki, LQ Zhang, Y Liu, A Kushima, ... Nano letters 11 (8), 3312-3318, 2011 | 870 | 2011 |
In situ atomic-scale imaging of electrochemical lithiation in silicon XH Liu, JW Wang, S Huang, F Fan, X Huang, Y Liu, S Krylyuk, J Yoo, ... Nature nanotechnology 7 (11), 749-756, 2012 | 709 | 2012 |
Strain engineering and epitaxial stabilization of halide perovskites Y Chen, Y Lei, Y Li, Y Yu, J Cai, MH Chiu, R Rao, Y Gu, C Wang, W Choi, ... Nature 577 (7789), 209-215, 2020 | 571 | 2020 |
Rational synthesis of p-type zinc oxide nanowire arrays using simple chemical vapor deposition B Xiang, P Wang, X Zhang, SA Dayeh, DPR Aplin, C Soci, D Yu, D Wang Nano letters 7 (2), 323-328, 2007 | 570 | 2007 |
Ultrafast electrochemical lithiation of individual Si nanowire anodes XH Liu, LQ Zhang, L Zhong, Y Liu, H Zheng, JW Wang, JH Cho, ... Nano letters 11 (6), 2251-2258, 2011 | 492 | 2011 |
Adaptable silicon–carbon nanocables sandwiched between reduced graphene oxide sheets as lithium ion battery anodes B Wang, X Li, X Zhang, B Luo, M Jin, M Liang, SA Dayeh, ST Picraux, ... ACS nano 7 (2), 1437-1445, 2013 | 482 | 2013 |
Lattice strain effects on the optical properties of MoS2 nanosheets L Yang, X Cui, J Zhang, K Wang, M Shen, S Zeng, SA Dayeh, L Feng, ... Scientific reports 4 (1), 5649, 2014 | 472 | 2014 |
High electron mobility InAs nanowire field‐effect transistors SA Dayeh, DPR Aplin, X Zhou, PKL Yu, ET Yu, D Wang small 3 (2), 326-332, 2007 | 405 | 2007 |
A fabrication process for flexible single-crystal perovskite devices Y Lei, Y Chen, R Zhang, Y Li, Q Yan, S Lee, Y Yu, H Tsai, W Choi, ... Nature 583 (7818), 790-795, 2020 | 379 | 2020 |
Precise semiconductor nanowire placement through dielectrophoresis S Raychaudhuri, SA Dayeh, D Wang, ET Yu Nano letters 9 (6), 2260-2266, 2009 | 274 | 2009 |
III− V nanowire growth mechanism: V/III ratio and temperature effects SA Dayeh, ET Yu, D Wang Nano letters 7 (8), 2486-2490, 2007 | 223 | 2007 |
High density individually addressable nanowire arrays record intracellular activity from primary rodent and human stem cell derived neurons R Liu, R Chen, AT Elthakeb, SH Lee, S Hinckley, ML Khraiche, J Scott, ... Nano letters 17 (5), 2757-2764, 2017 | 190 | 2017 |
Direct observation of nanoscale size effects in Ge semiconductor nanowire growth SA Dayeh, ST Picraux Nano letters 10 (10), 4032-4039, 2010 | 184 | 2010 |
Growth, defect formation, and morphology control of germanium–silicon semiconductor nanowire heterostructures SA Dayeh, J Wang, N Li, JY Huang, AV Gin, ST Picraux Nano letters 11 (10), 4200-4206, 2011 | 141 | 2011 |
Influence of surface states on the extraction of transport parameters from InAs nanowire field effect transistors SA Dayeh, C Soci, PKL Yu, ET Yu, D Wang Applied Physics Letters 90 (16), 2007 | 139 | 2007 |
Development and translation of PEDOT: PSS microelectrodes for intraoperative monitoring M Ganji, E Kaestner, J Hermiz, N Rogers, A Tanaka, D Cleary, SH Lee, ... Advanced Functional Materials 28 (12), 1700232, 2018 | 135 | 2018 |
Heteroepitaxial growth of vertical GaAs nanowires on Si (111) substrates by metal− organic chemical vapor deposition XY Bao, C Soci, D Susac, J Bratvold, DPR Aplin, W Wei, CY Chen, ... Nano letters 8 (11), 3755-3760, 2008 | 130 | 2008 |
Micromachined infrared bolometers on flexible polyimide substrates SA Dayeh, DP Butler, Z Celik-Butler Sensors and Actuators A: Physical 118 (1), 49-56, 2005 | 129 | 2005 |
Scalable tactile sensor arrays on flexible substrates with high spatiotemporal resolution enabling slip and grip for closed-loop robotics H Oh, GC Yi, M Yip, SA Dayeh Science advances 6 (46), eabd7795, 2020 | 122 | 2020 |