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Stretchable Electronics with Strain-Resistive Performance

delete2023-12-11
delete13
PRE
AI
S
Sihui Hou
陈聪 (Cong Chen)
L
Libing Bai
J
Junsheng Yu
Y
Yuhua Cheng
黄卫 (Huang Wei) *
DOI:10.1002/smll.202306749delete
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Abstract

Abstract

En 中文
Stretchable electronics have attracted tremendous attention amongst academic and industrial communities due to their prospective applications in personal healthcare, human-activity monitoring, artificial skins, wearable displays, human-machine interfaces, etc. Other than mechanical robustness, stable performances under complex strains in these devices that are not for strain sensing are equally important for practical applications. Here, a comprehensive summarization of recent advances in stretchable electronics with strain-resistive performance is presented. First, detailed overviews of intrinsically strain-resistive stretchable materials, including conductors, semiconductors, and insulators, are given. Then, systematic representations of advanced structures, including helical, serpentine, meshy, wrinkled, and kirigami-based structures, for strain-resistive performance are summarized. Next, stretchable arrays and circuits with strain-resistive performance, that integrate multiple functionalities and enable complex behaviors, are introduced. This review presents a detailed overview of recent progress in stretchable electronics with strain-resistive performances and provides a guideline for the future development of stretchable electronics. This review presents novel strategies for strain-resistive designs and summarizes recent progress in stretchable electronics with strain-resistive performances. The strategies, including material design, structure engineering, and system integration, are summarized. Finally, challenges and perspectives regarding the development of strain-resistive stretchable electronics are discussed.image
Keywords:
material engineering
strain-resistance
stretchable electronics
structural engineering
system integration

Journal

Small cover
Small
IF:
12.1
Papers:
3.0W
Citations:
16.4W

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