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一种用于电子纺织品的超薄可充电固态锌离子纤维电池。

An ultrathin rechargeable solid-state zinc ion fiber battery for electronic textiles.

作者信息

Xiao Xiao, Xiao Xiao, Zhou Yihao, Zhao Xun, Chen Guorui, Liu Zixiao, Wang Zihan, Lu Chengyue, Hu Menglei, Nashalian Ardo, Shen Sophia, Xie Kedi, Yang Weiwei, Gong Yongji, Ding Wenbo, Servati Peyman, Han Chao, Dou Shi Xue, Li Weijie, Chen Jun

机构信息

Department of Bioengineering, University of California, Los Angeles, Los Angeles, CA 90095, USA.

Institute for Superconducting and Electronic Materials, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Sci Adv. 2021 Dec 3;7(49):eabl3742. doi: 10.1126/sciadv.abl3742. Epub 2021 Dec 1.

Abstract

Electronic textiles (e-textiles), having the capability of interacting with the human body and surroundings, are changing our everyday life in fundamental and meaningful ways. Yet, the expansion of the field of e-textiles is still limited by the lack of stable and biocompatible power sources with aesthetic designs. Here, we report a rechargeable solid-state Zn/MnO fiber battery with stable cyclic performance exceeding 500 hours while maintaining 98.0% capacity after more than 1000 charging/recharging cycles. The mechanism of the high electrical and mechanical performance due to the graphene oxide–embedded polyvinyl alcohol hydrogel electrolytes was rationalized by Monte Carlo simulation and finite element analysis. With a collection of key features including thin, light weight, economic, and biocompatible as well as high energy density, the Zn/MnO fiber battery could seamlessly be integrated into a multifunctional on-body e-textile, which provides a stable power unit for continuous and simultaneous heart rate, temperature, humidity, and altitude monitoring.

摘要

电子织物(电子纺织品)具有与人体和周围环境相互作用的能力,正在从根本上和有意义的方面改变我们的日常生活。然而,电子纺织品领域的扩展仍然受到缺乏具有美观设计的稳定且生物相容的电源的限制。在此,我们报道了一种可充电固态锌/二氧化锰纤维电池,其具有超过500小时的稳定循环性能,并且在1000多次充放电循环后仍保持98.0%的容量。通过蒙特卡罗模拟和有限元分析,阐明了嵌入氧化石墨烯的聚乙烯醇水凝胶电解质导致高电气和机械性能的机制。锌/二氧化锰纤维电池具有薄、轻、经济、生物相容以及高能量密度等一系列关键特性,能够无缝集成到多功能可穿戴电子织物中,为连续同时监测心率、温度、湿度和海拔高度提供稳定的电源单元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9644/8635438/33267b1a824e/sciadv.abl3742-f1.jpg

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