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Liquid Metal-based Stable And Stretchable Zn-ion Battery for Electronic Textiles.

Jie PuQinghe CaoYong GaoQiangzheng WangZeyu GengLeiqing CaoFan BuNute YangCao Guan
Published in: Advanced materials (Deerfield Beach, Fla.) (2023)
Electronic textiles harmoniously interact with the human body and the surrounding environment, offering tremendous interest in smart wearable electronics. However, their wide application faces challenges due to the lack of stable and stretchable power electrodes/devices with multifunctional design. Herein, we report an intrinsically stretchable liquid metal-based fibrous anode for a stable Zn-ion battery (ZIB). Benefiting from the liquid feature and superior deformability of the liquid metal, optimized Zn ion concentration distribution and Zn (002) deposition behavior have been observed, which results in dendrite-free performance even under stretching. With a strain of 50%, the ZIB maintains a high capacity of 139.8 mAh cm-3 (corresponding to 83.0% of the initial value) after 300 cycles, outperforming bare Zn fiber-based ZIB. The fibrous ZIB seamlessly integrates with sensor, Joule heater and wirelessly charging device, which provides a stable power supply for human signal monitoring and personal thermal management, holding promise for the application of wearable multifunctional electronic textiles. This article is protected by copyright. All rights reserved.
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