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Yahao Dai
Yahao Dai
Pritzker School of Molecular Engineering, University of Chicago
Verified email at uchicago.edu
Title
Cited by
Cited by
Year
Light-steered locomotion of muscle-like hydrogel by self-coordinated shape change and friction modulation
QL Zhu, C Du, Y Dai, M Daab, M Matejdes, J Breu, W Hong, Q Zheng, ...
Nature communications 11 (1), 5166, 2020
1702020
Stretchable transistors and functional circuits for human-integrated electronics
Y Dai, H Hu, M Wang, J Xu, S Wang
Nature Electronics 4 (1), 17-29, 2021
1672021
Stretchable redox‐active semiconducting polymers for high‐performance organic electrochemical transistors
Y Dai, S Dai, N Li, Y Li, M Moser, J Strzalka, A Prominski, Y Liu, Q Zhang, ...
Advanced Materials 34 (23), 2201178, 2022
592022
High-efficiency stretchable light-emitting polymers from thermally activated delayed fluorescence
W Liu, C Zhang, R Alessandri, BT Diroll, Y Li, H Liang, X Fan, K Wang, ...
Nature materials 22 (6), 737-745, 2023
432023
Intrinsically stretchable neuromorphic devices for on-body processing of health data with artificial intelligence
S Dai, Y Dai, Z Zhao, F Xia, Y Li, Y Liu, P Cheng, J Strzalka, S Li, N Li, ...
Matter 5 (10), 3375-3390, 2022
342022
Bioadhesive polymer semiconductors and transistors for intimate biointerfaces
N Li, Y Li, Z Cheng, Y Liu, Y Dai, S Kang, S Li, N Shan, S Wai, A Ziaja, ...
Science 381 (6658), 686-693, 2023
302023
Achieving tissue-level softness on stretchable electronics through a generalizable soft interlayer design
Y Li, N Li, W Liu, A Prominski, S Kang, Y Dai, Y Liu, H Hu, S Wai, S Dai, ...
Nature Communications 14 (1), 4488, 2023
282023
A universal and facile approach for building multifunctional conjugated polymers for human-integrated electronics
N Li, Y Dai, Y Li, S Dai, J Strzalka, Q Su, N De Oliveira, Q Zhang, ...
Matter 4 (9), 3015-3029, 2021
132021
An intrinsically stretchable power-source system for bioelectronics
P Cheng, S Dai, Y Liu, Y Li, H Hayashi, R Papani, Q Su, N Li, Y Dai, W Liu, ...
Device 2 (1), 2024
12024
High-efficiency stretchable light-emitting polymers from thermally activated delayed fluorescence (Apr, 0.1038/s41563-023-01529-w, 2023)
W Liu, C Zhang, R Alessandri, BT Diroll, Y Li, H Liang, X Fan, K Wang, ...
NATURE MATERIALS 22 (9), 1160-1160, 2023
12023
Publisher Correction: High-efficiency stretchable light-emitting polymers from thermally activated delayed fluorescence
W Liu, C Zhang, R Alessandri, BT Diroll, Y Li, H Liang, X Fan, K Wang, ...
Nature materials 22 (9), 1160, 2023
2023
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