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Flexible human-machine interface touch system based on double-network solid-state ionic conductive elastomers

delete2024-06-01
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PRE
AI
Z
Zhan Wang
张
张祺 (Qi Zhang)
Z
Zhilu Ye
Y
Yuhao Wang
Z
Zihao Yang
王一菁 封面图
王一菁 (Yijing Wang)
张
张翠玲 (Cuiling Zhang)
张泽英 封面图
张泽英 (Zeying Zhang)
L
Li Xue
F
Feng Ma
Z
Zhiguang Wang
N
Niancai Peng
Z
Zhuangde Jiang
Y
Yi Lyu
刘明 封面图
刘明 (Ming Liu) *
X
Xiaohui Zhang *
DOI:10.1016/j.cej.2024.151468delete
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摘要

摘要

En 中文
Recent trends have seen the adoption of soft gel-based ionic conductors in the development of touch pads to enhance flexibility. Yet, these gel-based systems are hampered by intrinsic limitations like dehydration and ion/ organic reagent leakage. Here, we report a flexible touch system, ingeniously combining a surface-capacitive system with solid-state ionic conductive elastomers. Combination of salt-in-polymer and double-network structure strategies effectively addresses the longstanding trade-off between mechanical robustness and ionic conductivity. This flexible touch system supports a range of applications, from singular point interactions (flexible touch buttons) to line applications (stepless sound control and page turning) and finally, surface functionalities (game control and handwriting recognition). This research contributes significant insights to the advancement of next-generation human interfaces and IoTs.
Keyword:
Flexible human-machine interface touch
system
Ionic conductive elastomer
Salt -in -polymer strategy
Double -networks structure strategy

期刊

Chemical Engineering Journal 封面图
Chemical Engineering Journal
IF:
13.2
论文数:
7.5W
被引数:
48.5W

机构

X
xi'an jiaotong university
学者数:
9.3W
论文数: 6.7W
被引数: 75
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