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Jeong Ho Cho
Jeong Ho Cho
在 yonsei.ac.kr 的电子邮件经过验证
标题
引用次数
引用次数
年份
Printable ion-gel gate dielectrics for low-voltage polymer thin-film transistors on plastic
JH Cho, J Lee, YU Xia, B Kim, Y He, MJ Renn, TP Lodge, C Daniel Frisbie
Nature materials 7 (11), 900-906, 2008
13192008
High-performance perovskite-graphene hybrid photodetector.
Y Lee, J Kwon, E Hwang, CH Ra, WJ Yoo, JH Ahn, JH Park, JH Cho
Advanced Materials (Deerfield Beach, Fla.) 27 (1), 41-46, 2014
8672014
Stretchable and multimodal all graphene electronic skin
DH Ho, Q Sun, SY Kim, JT Han, DH Kim, JH Cho
Advanced Materials 28 (13), 2601-2608, 2016
5562016
High-performance flexible graphene field effect transistors with ion gel gate dielectrics
BJ Kim, H Jang, SK Lee, BH Hong, JH Ahn, JH Cho
Nano letters 10 (9), 3464-3466, 2010
4942010
Photoresponse of CsPbBr3 and Cs4PbBr6 Perovskite Single Crystals
JH Cha, JH Han, W Yin, C Park, Y Park, TK Ahn, JH Cho, DY Jung
The journal of physical chemistry letters 8 (3), 565-570, 2017
4442017
Stretchable graphene transistors with printed dielectrics and gate electrodes
SK Lee, BJ Kim, H Jang, SC Yoon, C Lee, BH Hong, JA Rogers, JH Cho, ...
Nano letters 11 (11), 4642-4646, 2011
4362011
High‐capacitance ion gel gate dielectrics with faster polarization response times for organic thin film transistors
JH Cho, J Lee, Y He, BS Kim, TP Lodge, CD Frisbie
Advanced materials 20 (4), 686-690, 2008
4202008
Ion gel-gated polymer thin-film transistors: Operating mechanism and characterization of gate dielectric capacitance, switching speed, and stability
J Lee, LG Kaake, JH Cho, XY Zhu, TP Lodge, CD Frisbie
The Journal of Physical Chemistry C 113 (20), 8972-8981, 2009
4132009
Active matrix electronic skin strain sensor based on piezopotential-powered graphene transistors
Q Sun, W Seung, BJ Kim, S Seo, SW Kim, JH Cho
Adv. Mater 27 (22), 3411-3417, 2015
3262015
Dye-Sensitized MoS2 Photodetector with Enhanced Spectral Photoresponse
SH Yu, Y Lee, SK Jang, J Kang, J Jeon, C Lee, JY Lee, H Kim, E Hwang, ...
ACS nano 8 (8), 8285-8291, 2014
3262014
Single‐crystal polythiophene microwires grown by self‐assembly
DH Kim, JT Han, YD Park, Y Jang, JH Cho, M Hwang, K Cho
Advanced Materials 18 (6), 719-723, 2006
3172006
Optoelectronic synapse based on igzo‐alkylated graphene oxide hybrid structure
J Sun, S Oh, Y Choi, S Seo, MJ Oh, M Lee, WB Lee, PJ Yoo, JH Cho, ...
Advanced Functional Materials 28 (47), 1804397, 2018
3162018
Large-scale organic nanowire lithography and electronics
SY Min, TS Kim, BJ Kim, H Cho, YY Noh, H Yang, JH Cho, TW Lee
Nature communications 4 (1), 1773, 2013
3162013
High‐performance triboelectric nanogenerators based on electrospun polyvinylidene fluoride–silver nanowire composite nanofibers
S Cheon, H Kang, H Kim, Y Son, JY Lee, HJ Shin, SW Kim, JH Cho
Advanced Functional Materials 28 (2), 1703778, 2018
3152018
Effect of the phase states of self-assembled monolayers on pentacene growth and thin-film transistor characteristics
HS Lee, DH Kim, JH Cho, M Hwang, Y Jang, K Cho
Journal of the American Chemical Society 130 (32), 10556-10564, 2008
2572008
Solubility‐induced ordered polythiophene precursors for high‐performance organic thin‐film transistors
YD Park, HS Lee, YJ Choi, D Kwak, JH Cho, S Lee, K Cho
Advanced Functional Materials 19 (8), 1200-1206, 2009
2562009
Sensing with MXenes: progress and prospects
DH Ho, YY Choi, SB Jo, JM Myoung, JH Cho
Advanced Materials 33 (47), 2005846, 2021
2522021
Low‐temperature, solution‐processed and alkali metal doped ZnO for high‐performance thin‐film transistors
SY Park, BJ Kim, K Kim, MS Kang, KH Lim, TI Lee, JM Myoung, HK Baik, ...
Advanced Materials 6 (24), 834-838, 2012
2482012
Periodic array of polyelectrolyte-gated organic transistors from electrospun poly (3-hexylthiophene) nanofibers
SW Lee, HJ Lee, JH Choi, WG Koh, JM Myoung, JH Hur, JJ Park, JH Cho, ...
Nano letters 10 (1), 347-351, 2010
2372010
Stable superhydrophobic organic− inorganic hybrid films by electrostatic self-assembly
JT Han, Y Zheng, JH Cho, X Xu, K Cho
The Journal of Physical Chemistry B 109 (44), 20773-20778, 2005
2362005
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