Electro-optic characteristics and switching principle of a nematic liquid crystal cell controlled by fringe-field switching SH Lee, SL Lee, HY Kim Applied physics letters 73 (20), 2881-2883, 1998 | 912 | 1998 |
Liquid crystal displays: addressing schemes and electro-optical effects E Lueder, P Knoll, SH Lee John Wiley & Sons, 2022 | 623 | 2022 |
Wafer-scale single-crystal hexagonal boron nitride film via self-collimated grain formation JS Lee, SH Choi, SJ Yun, YI Kim, S Boandoh, JH Park, BG Shin, H Ko, ... Science 362 (6416), 817-821, 2018 | 448 | 2018 |
Seamless stitching of graphene domains on polished copper (111) foil VL Nguyen, BG Shin, DL Duong, ST Kim, D Perello, YJ Lim, QH Yuan, ... Advanced Materials 27 (8), 1376-1382, 2015 | 371 | 2015 |
Low voltage blue-phase liquid crystal displays L Rao, Z Ge, ST Wu, SH Lee Applied Physics Letters 95 (23), 2009 | 320 | 2009 |
Stabilization of the liquid crystal director in the patterned vertical alignment mode through formation of pretilt angle by reactive mesogen SG Kim, SM Kim, YS Kim, HK Lee, SH Lee, GD Lee, JJ Lyu, KH Kim Applied physics letters 90 (26), 2007 | 254 | 2007 |
Electrical-field effect on carbon nanotubes in a twisted nematic liquid crystal cell IS Baik, SY Jeon, SH Lee, KA Park, SH Jeong, KH An, YH Lee Applied Physics Letters 87 (26), 2005 | 253 | 2005 |
Fringe field switching mode LCD JD Noh, SH Lee, SL Lee US Patent 6,646,707, 2003 | 179 | 2003 |
Effective seed-assisted synthesis of gold nanoparticles anchored nitrogen-doped graphene for electrochemical detection of glucose and dopamine TD Thanh, J Balamurugan, SH Lee, NH Kim, JH Lee Biosensors and Bioelectronics 81, 259-267, 2016 | 178 | 2016 |
Anchoring a liquid crystal molecule on a single-walled carbon nanotube KA Park, SM Lee, SH Lee, YH Lee The Journal of Physical Chemistry C 111 (4), 1620-1624, 2007 | 175 | 2007 |
Liquid crystal display and fabrication method SH Lee, SL Lee, WH Choi, JY Lee US Patent 6,233,034, 2001 | 175 | 2001 |
Optical absorption spectroscopy for determining carbon nanotube concentration in solution SH Jeong, KK Kim, SJ Jeong, KH An, SH Lee, YH Lee Synthetic Metals 157 (13-15), 570-574, 2007 | 167 | 2007 |
Reduced graphene oxide modified smart conducting paper for cancer biosensor S Kumar, S Kumar, S Srivastava, BK Yadav, SH Lee, JG Sharma, ... Biosensors and Bioelectronics 73, 114-122, 2015 | 163 | 2015 |
Wall-shaped electrodes for reducing the operation voltage of polymer-stabilized blue phase liquid crystal displays M Kim, MS Kim, BG Kang, MK Kim, S Yoon, SH Lee, Z Ge, L Rao, ... Journal of Physics D: Applied Physics 42 (23), 235502, 2009 | 144 | 2009 |
Facile preparation of flower-like NiCo2O4/three dimensional graphene foam hybrid for high performance supercapacitor electrodes C Zhang, T Kuila, NH Kim, SH Lee, JH Lee Carbon 89, 328-339, 2015 | 142 | 2015 |
High-transmittance, wide-viewing-angle liquid crystal display controlled by fringe-field switching HYK S. H. Lee, S. L. Lee Proceedings of 18th Int. Display Research Conference, 371-374, 1998 | 142* | 1998 |
High-transmittance, wide-viewing-angle liquid crystal display controlled by fringe-field switching HYK S. H. Lee, S. L. Lee Asia Display, 371-374, 1998 | 142* | 1998 |
LCD of high aperture ratio and high transmittance preventing color shift having transparent pixel and counter electrodes producing oblique electric fields SH Lee, WH Choi, TY Eom US Patent 6,256,081, 2001 | 126 | 2001 |
Liquid crystal display having high transmittance and high aperture ratio SH Lee, SL Lee, WH Choi, JY Lee US Patent 6,522,380, 2003 | 115 | 2003 |
Devices and materials for high-performance mobile liquid crystal displays SH Lee, SS Bhattacharyya, HS Jin, KU Jeong Journal of Materials Chemistry 22 (24), 11893-11903, 2012 | 111 | 2012 |