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He, Haoxuan; Fu, Yongming; Zhao, Tianming; Gao, Xuchao; Xing, Lili; Zhang, Yan; Xue, Xinyu, E-mail: zhangyan@uestc.edu.cn, E-mail: xuexinyu@mail.neu.edu.cn2017
AbstractAbstract
[en] Highlights: • All-solid-state flexible self-charging power cells have been fabricated. • The solid piezo-electrolyte can act as both the electrolyte and piezo-separator. • All-solid-state SCPC has high energy conversion/storage efficiency and stability. • All-solid-state SCPC can power various wearable electronics and LEDs. A new all-solid-state self-charging power cell (SCPC) has been fabricated using mesoporous PVDF-LiPF6 film as piezo-electrolyte. The solid piezo-electrolyte can act as both the electrolyte and piezo-separator, which is prepared through immobilizing the liquid electrolyte in mesoporous PVDF film. The all-solid-state flexible SCPC can be efficiently charged up by mechanical deformation, and thus can directly harvest/store the body-motion energy. The SCPC sealed in stainless-steel cell can be charged by compressive deformation (30 N, 1 Hz) and the storage capacity is 0.118 μA h within 240 s, which is about 5 times larger than that of the traditional non-integrated system. The SCPC sealed in flexible shell can be charged by the bending deformation. The all-solid-state flexible SCPCs can power a variety of wearable electronic devices, including sports bracelets, smart watches and LEDs. This work provides an innovative approach for developing new self-sustainable battery and self-powered wearable electronics.
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S2211285517304470; Available from http://dx.doi.org/10.1016/j.nanoen.2017.07.033; Copyright (c) 2017 Elsevier Ltd. All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Nano Energy (Print); ISSN 2211-2855;
; v. 39; p. 590-600

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