Metal oxide semiconductor nanomembrane–based soft unnoticeable multifunctional electronics for wearable human-machine interfaces K Sim, Z Rao, Z Zou, F Ershad, J Lei, A Thukral, J Chen, QA Huang, ... Science advances 5 (8), eaav9653, 2019 | 276 | 2019 |
Rubbery electronics and sensors from intrinsically stretchable elastomeric composites of semiconductors and conductors HJ Kim, K Sim, A Thukral, C Yu Science advances 3 (9), e1701114, 2017 | 273 | 2017 |
Ultra-conformal drawn-on-skin electronics for multifunctional motion artifact-free sensing and point-of-care treatment F Ershad, A Thukral, J Yue, P Comeaux, Y Lu, H Shim, K Sim, NI Kim, ... Nature communications 11 (1), 3823, 2020 | 229 | 2020 |
Flexible and stretchable metal oxide nanofiber networks for multimodal and monolithically integrated wearable electronics B Wang, A Thukral, Z Xie, L Liu, X Zhang, W Huang, X Yu, C Yu, TJ Marks, ... Nature communications 11 (1), 2405, 2020 | 219 | 2020 |
Stretchable elastic synaptic transistors for neurologically integrated soft engineering systems H Shim, K Sim, F Ershad, P Yang, A Thukral, Z Rao, HJ Kim, Y Liu, ... Science advances 5 (10), eaax4961, 2019 | 215 | 2019 |
An epicardial bioelectronic patch made from soft rubbery materials and capable of spatiotemporal mapping of electrophysiological activity K Sim, F Ershad, Y Zhang, P Yang, H Shim, Z Rao, Y Lu, A Thukral, ... Nature Electronics 3 (12), 775-784, 2020 | 154 | 2020 |
Fully rubbery integrated electronics from high effective mobility intrinsically stretchable semiconductors K Sim, Z Rao, HJ Kim, A Thukral, H Shim, C Yu Science advances 5 (2), eaav5749, 2019 | 138 | 2019 |
Highly sensitive and very stretchable strain sensor based on a rubbery semiconductor HJ Kim, A Thukral, C Yu ACS applied materials & interfaces 10 (5), 5000-5006, 2018 | 118 | 2018 |
Air/water interfacial assembled rubbery semiconducting nanofilm for fully rubbery integrated electronics YS Guan, A Thukral, S Zhang, K Sim, X Wang, Y Zhang, F Ershad, Z Rao, ... Science Advances 6 (38), eabb3656, 2020 | 60 | 2020 |
Biaxially stretchable fully elastic transistors based on rubbery semiconductor nanocomposites HJ Kim, A Thukral, S Sharma, C Yu Advanced Materials Technologies 3 (6), 1800043, 2018 | 43 | 2018 |
Invited Article: Emerging soft bioelectronics for cardiac health diagnosis and treatment F Ershad, K Sim, A Thukral, YS Zhang, C Yu APL materials 7 (3), 2019 | 39 | 2019 |
Artificial neuromorphic cognitive skins based on distributed biaxially stretchable elastomeric synaptic transistors H Shim, S Jang, A Thukral, S Jeong, H Jo, B Kan, S Patel, G Wei, W Lan, ... Proceedings of the National Academy of Sciences 119 (23), e2204852119, 2022 | 30 | 2022 |
Soft ultrathin silicon electronics for soft neural interfaces: a review of recent advances of soft neural interfaces based on ultrathin silicon A Thukral, F Ershad, N Enan, Z Rao, C Yu IEEE Nanotechnology Magazine 12 (1), 21-34, 2018 | 27 | 2018 |
All‐Polymer Based Stretchable Rubbery Electronics and Sensors Z Rao, A Thukral, P Yang, Y Lu, H Shim, W Wu, A Karim, C Yu Advanced Functional Materials 32 (15), 2111232, 2022 | 20 | 2022 |
Rubbery electronics and sensors from intrinsically stretchable elastomeric composites of semiconductors and conductors. Sci. Adv. 3, 1–9 (2017). 1. Gong, S. et al. Fabrication … HJ Kim, K Sim, A Thukral, C Yu Adv. Electron. Mater 2, 1-8, 2016 | 3 | 2016 |
All‐Polymer Based Stretchable Rubbery Electronics and Sensors (Adv. Funct. Mater. 15/2022). Z Rao, A Thukral, P Yang, Y Lu, H Shim, W Wu, A Karim, C Yu Advanced Functional Materials 32 (15), 2022 | | 2022 |
Transistors: Biaxially Stretchable Fully Elastic Transistors Based on Rubbery Semiconductor Nanocomposites (Adv. Mater. Technol. 6/2018) HJ Kim, A Thukral, S Sharma, C Yu Advanced Materials Technologies 3 (6), 1870022, 2018 | | 2018 |
Soft Ultrathin Silicon Electronics for Soft Neural Interfaces A THUKRAL, F ERSHAD, N ENAN, Z RAO, C YU | | 2018 |
1. Haechan Park, Sehyun Kim, Juyeong Lee, Inwoo Lee, Sujitkumar Bontapalle, Younghoon Na, and Kyoseung Sim*“Organic flexible electronics with closed-loop recycling for … A Thukral, A Elgalad, Y Xi, B Tian, DA Taylor, C Yu | | |