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Self-Powered Human-Interactive Transparent Nanopaper Systems

Self-powered human-interactive but invisible electronics have many applications in anti-theft and anti-fake systems for human society. In this work, for the first time, we demonstrate a transparent paper-based, self-powered, and human-interactive flexible system. The system is based on an electrosta...

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Published in:ACS nano 2015-07, Vol.9 (7), p.7399-7406
Main Authors: Zhong, Junwen, Zhu, Hongli, Zhong, Qize, Dai, Jiaqi, Li, Wenbo, Jang, Soo-Hwan, Yao, Yonggang, Henderson, Doug, Hu, Qiyi, Hu, Liangbing, Zhou, Jun
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cited_by cdi_FETCH-LOGICAL-a366t-fc53a3d1143758ea2de31f133f5988167b90e750968811b5b79cd3b7ee80e0793
cites cdi_FETCH-LOGICAL-a366t-fc53a3d1143758ea2de31f133f5988167b90e750968811b5b79cd3b7ee80e0793
container_end_page 7406
container_issue 7
container_start_page 7399
container_title ACS nano
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creator Zhong, Junwen
Zhu, Hongli
Zhong, Qize
Dai, Jiaqi
Li, Wenbo
Jang, Soo-Hwan
Yao, Yonggang
Henderson, Doug
Hu, Qiyi
Hu, Liangbing
Zhou, Jun
description Self-powered human-interactive but invisible electronics have many applications in anti-theft and anti-fake systems for human society. In this work, for the first time, we demonstrate a transparent paper-based, self-powered, and human-interactive flexible system. The system is based on an electrostatic induction mechanism with no extra power system appended. The self-powered, transparent paper device can be used for a transparent paper-based art anti-theft system in museums or for a smart mapping anti-fake system in precious packaging and documents, by virtue of the advantages of adding/removing freely, having no impairment on the appearance of the protected objects, and being easily mass manufactured. This initial study bridges the transparent nanopaper with a self-powered and human-interactive electronic system, paving the way for the development of smart transparent paper electronics.
doi_str_mv 10.1021/acsnano.5b02414
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source American Chemical Society:Jisc Collections:American Chemical Society Read & Publish Agreement 2022-2024 (Reading list)
subjects Biosensing Techniques - methods
Electronic systems
Electronics
Flexible manufacturing systems
Human
Humans
Impairment
Nanostructure
Nanostructures - chemistry
Static Electricity
Theft prevention
Touch
title Self-Powered Human-Interactive Transparent Nanopaper Systems
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