Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics

Metal film-based electronics usually fail via uncontrolled cracking at small strains. Here, the authors design a micro-/nano-structured surface with bundled flexible nanowires onto which a metal film can stretch more than a regular flat surface, retard penetrating cracks and remain sensitive.

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Autores principales: Weining Miao, Yuxing Yao, Zhiwei Zhang, Chunping Ma, Shengzhe Li, Jiayue Tang, He Liu, Zemin Liu, Dianyu Wang, Michael A. Camburn, Jen-Chun Fang, Ruiran Hao, Xinyu Fang, Shuang Zheng, Nan Hu, Xiaoguang Wang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/db1fe3dcd7a24447babcab0618a6c7b2
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spelling oai:doaj.org-article:db1fe3dcd7a24447babcab0618a6c7b22021-12-02T15:35:15ZMicro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics10.1038/s41467-019-11803-82041-1723https://doaj.org/article/db1fe3dcd7a24447babcab0618a6c7b22019-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11803-8https://doaj.org/toc/2041-1723Metal film-based electronics usually fail via uncontrolled cracking at small strains. Here, the authors design a micro-/nano-structured surface with bundled flexible nanowires onto which a metal film can stretch more than a regular flat surface, retard penetrating cracks and remain sensitive.Weining MiaoYuxing YaoZhiwei ZhangChunping MaShengzhe LiJiayue TangHe LiuZemin LiuDianyu WangMichael A. CamburnJen-Chun FangRuiran HaoXinyu FangShuang ZhengNan HuXiaoguang WangNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Weining Miao
Yuxing Yao
Zhiwei Zhang
Chunping Ma
Shengzhe Li
Jiayue Tang
He Liu
Zemin Liu
Dianyu Wang
Michael A. Camburn
Jen-Chun Fang
Ruiran Hao
Xinyu Fang
Shuang Zheng
Nan Hu
Xiaoguang Wang
Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
description Metal film-based electronics usually fail via uncontrolled cracking at small strains. Here, the authors design a micro-/nano-structured surface with bundled flexible nanowires onto which a metal film can stretch more than a regular flat surface, retard penetrating cracks and remain sensitive.
format article
author Weining Miao
Yuxing Yao
Zhiwei Zhang
Chunping Ma
Shengzhe Li
Jiayue Tang
He Liu
Zemin Liu
Dianyu Wang
Michael A. Camburn
Jen-Chun Fang
Ruiran Hao
Xinyu Fang
Shuang Zheng
Nan Hu
Xiaoguang Wang
author_facet Weining Miao
Yuxing Yao
Zhiwei Zhang
Chunping Ma
Shengzhe Li
Jiayue Tang
He Liu
Zemin Liu
Dianyu Wang
Michael A. Camburn
Jen-Chun Fang
Ruiran Hao
Xinyu Fang
Shuang Zheng
Nan Hu
Xiaoguang Wang
author_sort Weining Miao
title Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
title_short Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
title_full Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
title_fullStr Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
title_full_unstemmed Micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
title_sort micro-/nano-voids guided two-stage film cracking on bioinspired assemblies for high-performance electronics
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/db1fe3dcd7a24447babcab0618a6c7b2
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