Tae-il Kim
Tae-il Kim
Professor, School of Chemical Engineering, Sungkyunkwan University(SKKU), Korea
Verified email at - Homepage
Cited by
Cited by
Epidermal electronics
DH Kim, N Lu, R Ma, YS Kim, RH Kim, S Wang, J Wu, SM Won, H Tao, ...
science 333 (6044), 838-843, 2011
A flexible and highly sensitive strain-gauge sensor using reversible interlocking of nanofibres
C Pang, GY Lee, T Kim, SM Kim, HN Kim, SH Ahn, KY Suh
Nature materials 11 (9), 795-801, 2012
Stretchable batteries with self-similar serpentine interconnects and integrated wireless recharging systems
S Xu, Y Zhang, J Cho, J Lee, X Huang, L Jia, JA Fan, Y Su, J Su, H Zhang, ...
Nature communications 4 (1), 1543, 2013
Ultransensitive mechanical crack-based sensor inspired by the spider sensory system
D Kang, PV Pikhitsa, YW Choi, C Lee, SS Shin, L Piao, B Park, KY Suh, ...
Nature 516 (7530), 222-226, 2014
Injectable, cellular-scale optoelectronics with applications for wireless optogenetics
T Kim, JG McCall, YH Jung, X Huang, ER Siuda, Y Li, J Song, YM Song, ...
Science 340 (6129), 211-216, 2013
Soft, stretchable, fully implantable miniaturized optoelectronic systems for wireless optogenetics
SI Park, DS Brenner, G Shin, CD Morgan, BA Copits, HU Chung, ...
Nature biotechnology 33 (12), 1280-1286, 2015
Flexible near-field wireless optoelectronics as subdermal implants for broad applications in optogenetics
G Shin, AM Gomez, R Al-Hasani, YR Jeong, J Kim, Z Xie, A Banks, ...
Neuron 93 (3), 509-521. e3, 2017
Dramatically Enhanced Mechanosensitivity and Signal-to-Noise Ratio of Nanoscale Crack-Based Sensors: Effect of Crack Depth.
B Park, J Kim, D Kang, C Jeong, KS Kim, JU Kim, PJ Yoo, T Kim
Advanced Materials (Deerfield Beach, Fla.) 28 (37), 8130-8137, 2016
MXene/polymer hybrid materials for flexible AC-filtering electrochemical capacitors
GS Gund, JH Park, R Harpalsinh, M Kota, JH Shin, T Kim, Y Gogotsi, ...
Joule 3 (1), 164-176, 2019
Materials and fabrication processes for transient and bioresorbable high‐performance electronics
SW Hwang, DH Kim, H Tao, T Kim, S Kim, KJ Yu, B Panilaitis, JW Jeong, ...
Advanced Functional Materials 23 (33), 4087-4093, 2013
Bioinspired electronics for artificial sensory systems
YH Jung, B Park, JU Kim, T Kim
Advanced Materials 31 (34), 1803637, 2019
High‐efficiency, microscale GaN light‐emitting diodes and their thermal properties on unusual substrates
T Kim, YH Jung, J Song, D Kim, Y Li, H Kim, IS Song, JJ Wierer, HA Pao, ...
small 8 (11), 1643-1649, 2012
Fabrication and application of flexible, multimodal light-emitting devices for wireless optogenetics
JG McCall, T Kim, G Shin, X Huang, YH Jung, R Al-Hasani, FG Omenetto, ...
Nature protocols 8 (12), 2413-2428, 2013
Stooped nanohairs: geometry-controllable, unidirectional, reversible, and robust gecko-like dry adhesive
T Kim, HE Jeong, KY Suh, HH Lee
Wiley-Blackwell, 2009
Anisotropic thermal conductive composite by the guided assembly of boron nitride nanosheets for flexible and stretchable electronics
H Hong, YH Jung, JS Lee, C Jeong, JU Kim, S Lee, H Ryu, H Kim, Z Ma, ...
Advanced Functional Materials 29 (37), 1902575, 2019
Low-pressure nanoimprint lithography
DY Khang, H Kang, TI Kim, HH Lee
Nano letters 4 (4), 633-637, 2004
Multilayer transfer printing for pixelated, multicolor quantum dot light-emitting diodes
BH Kim, S Nam, N Oh, SY Cho, KJ Yu, CH Lee, J Zhang, K Deshpande, ...
ACS nano 10 (5), 4920-4925, 2016
Bio-inspired slanted polymer nanohairs for anisotropic wetting and directional dry adhesion
MK Kwak, HE Jeong, T Kim, H Yoon, KY Suh
Soft Matter 6 (9), 1849-1857, 2010
Bioinspired reversible interlocker using regularly arrayed high aspect-ratio polymer fibers.
C Pang, TI Kim, WG Bae, D Kang, SM Kim, KY Suh
Advanced Materials (Deerfield Beach, Fla.) 24 (4), 475-479, 2011
Sources of hysteresis in carbon nanotube field‐effect transistors and their elimination via methylsiloxane encapsulants and optimized growth procedures
SH Jin, AE Islam, T Kim, J Kim, MA Alam, JA Rogers
Advanced Functional Materials 22 (11), 2276-2284, 2012
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