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Ging-Ji Nathan Wang
Ging-Ji Nathan Wang
stanford.edu의 이메일 확인됨
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Skin electronics from scalable fabrication of an intrinsically stretchable transistor array
S Wang, J Xu, W Wang, GJN Wang, R Rastak, F Molina-Lopez, JW Chung, ...
Nature 555 (7694), 83-88, 2018
19612018
Intrinsically stretchable and healable semiconducting polymer for organic transistors
JY Oh, S Rondeau-Gagné, YC Chiu, A Chortos, F Lissel, GJN Wang, ...
Nature 539 (7629), 411-415, 2016
12542016
Highly stretchable polymer semiconductor films through the nanoconfinement effect
J Xu, S Wang, GJN Wang, C Zhu, S Luo, L Jin, X Gu, S Chen, VR Feig, ...
Science 355 (6320), 59-64, 2017
11252017
Tough and water‐insensitive self‐healing elastomer for robust electronic skin
J Kang, D Son, GJN Wang, Y Liu, J Lopez, Y Kim, JY Oh, T Katsumata, ...
Advanced Materials 30 (13), 1706846, 2018
9822018
Effects of polymer coatings on electrodeposited lithium metal
J Lopez, A Pei, JY Oh, GJN Wang, Y Cui, Z Bao
Journal of the American Chemical Society 140 (37), 11735-11744, 2018
3792018
Multi-scale ordering in highly stretchable polymer semiconducting films
J Xu, HC Wu, C Zhu, A Ehrlich, L Shaw, M Nikolka, S Wang, ...
Nature materials 18 (6), 594-601, 2019
3232019
Stretchable self-healable semiconducting polymer film for active-matrix strain-sensing array
JY Oh, D Son, T Katsumata, Y Lee, Y Kim, J Lopez, HC Wu, J Kang, ...
Science advances 5 (11), eaav3097, 2019
2392019
Stretchable polymer semiconductors for plastic electronics
GJN Wang, A Gasperini, Z Bao
Advanced Electronic Materials 4 (2), 1700429, 2018
2222018
High-frequency and intrinsically stretchable polymer diodes
N Matsuhisa, S Niu, SJK O’Neill, J Kang, Y Ochiai, T Katsumata, HC Wu, ...
Nature 600 (7888), 246-252, 2021
2102021
Inducing elasticity through oligo‐siloxane crosslinks for intrinsically stretchable semiconducting polymers
GJN Wang, L Shaw, J Xu, T Kurosawa, BC Schroeder, JY Oh, SJ Benight, ...
Advanced Functional Materials 26 (40), 7254-7262, 2016
1722016
Effect of nonconjugated spacers on mechanical properties of semiconducting polymers for stretchable transistors
J Mun, GJN Wang, JY Oh, T Katsumata, FL Lee, J Kang, HC Wu, F Lissel, ...
Advanced functional materials 28 (43), 1804222, 2018
1712018
Fully stretchable active-matrix organic light-emitting electrochemical cell array
J Liu, J Wang, Z Zhang, F Molina-Lopez, GJN Wang, BC Schroeder, ...
Nature communications 11 (1), 3362, 2020
1692020
An intrinsically stretchable high‐performance polymer semiconductor with low crystallinity
Y Zheng, GJN Wang, J Kang, M Nikolka, HC Wu, H Tran, S Zhang, H Yan, ...
Advanced Functional Materials 29 (46), 1905340, 2019
1602019
A peculiar low-luminosity short gamma-ray burst from a double neutron star merger progenitor
BB Zhang, B Zhang, H Sun, WH Lei, H Gao, Y Li, L Shao, Y Zhao, YD Hu, ...
Nature Communications 9 (1), 447, 2018
1262018
Conjugated carbon cyclic nanorings as additives for intrinsically stretchable semiconducting polymers
J Mun, J Kang, Y Zheng, S Luo, HC Wu, N Matsuhisa, J Xu, GJN Wang, ...
Advanced Materials 31 (42), 1903912, 2019
1222019
High hardness dual-phase high entropy alloy thin films produced by interface alloying
YP Cai, GJ Wang, YJ Ma, ZH Cao, XK Meng
Scripta Materialia 162, 281-285, 2019
1082019
Taming charge transport in semiconducting polymers with branched alkyl side chains
BC Schroeder, T Kurosawa, T Fu, YC Chiu, J Mun, GJN Wang, X Gu, ...
Advanced Functional Materials 27 (34), 1701973, 2017
1052017
Deformable organic nanowire field‐effect transistors
Y Lee, JY Oh, TR Kim, X Gu, Y Kim, GJN Wang, HC Wu, R Pfattner, ...
Advanced Materials 30 (7), 1704401, 2018
1042018
Nonhalogenated Solvent Processable and Printable High-Performance Polymer Semiconductor Enabled by Isomeric Nonconjugated Flexible Linkers
GJN Wang, F Molina-Lopez, H Zhang, J Xu, HC Wu, J Lopez, L Shaw, ...
Macromolecules, 2018
912018
Tuning the cross-linker crystallinity of a stretchable polymer semiconductor
GJN Wang, Y Zheng, S Zhang, J Kang, HC Wu, A Gasperini, H Zhang, ...
Chemistry of Materials 31 (17), 6465-6475, 2018
842018
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