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用于可穿戴能源纺织品的仿卷须超拉伸900%纤维基锌离子电池

Tendril-Inspired 900% Ultrastretching Fiber-Based Zn-Ion Batteries for Wearable Energy Textiles.

作者信息

Li Ming, Li Zengqing, Ye Xiaorui, Zhang Xueji, Qu Lijun, Tian Mingwei

机构信息

Research Center for Intelligent and Wearable Technology, State Key Laboratory of Bio-Fibers and Eco-Textiles, Intelligent Wearable Engineering Research Center of Qingdao, College of Textiles and Clothing, Qingdao University, Qingdao 266071, People's Republic of China.

Key Laboratory of Textile Science & Technology of Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 14;13(14):17110-17117. doi: 10.1021/acsami.1c02329. Epub 2021 Apr 2.

Abstract

Flexible fiber-based Zn-ion batteries represent an ideal power platform for smart wearable energy textiles featuring safety, flexibility, and unique integration. However, the inevitably low elongation limits (<400%) of common fiber-based Zn-ion batteries may restrict applications in highly deformable wearable materials and lead to unstable energy storage performance during practical activities. Herein, an elastic graphene/polyaniline-Zn@silver fiber-based battery (eG/P-Zn@SFB) with a helical structure inspired by the biological structure of luffa tendril is reported. eG/P-Zn@SFB exhibits ultrastretching properties and can be stretched to 900% with a 71% capacity retention ratio. Moreover, the prefabricated battery delivers a high specific capacity of 32.56 mAh/cm at 10 mA/cm and an energy density of 36.04 mWh/cm. As a proof of concept, the knitted integrated eG/P-Zn@SFB served as an effective power supply with different bending angles ranging from 0° to 180°, demonstrating potential applications and promising prospects in stretchable flexible electronics and wearable energy textiles.

摘要

柔性纤维基锌离子电池是智能可穿戴能源纺织品理想的电源平台,具有安全性、柔韧性和独特的集成性。然而,普通纤维基锌离子电池不可避免的低伸长率限制(<400%)可能会限制其在高变形可穿戴材料中的应用,并导致实际使用过程中储能性能不稳定。在此,报道了一种受丝瓜卷须生物结构启发的具有螺旋结构的弹性石墨烯/聚苯胺-锌@银纤维基电池(eG/P-Zn@SFB)。eG/P-Zn@SFB具有超拉伸性能,可拉伸至900%,容量保持率为71%。此外,预制电池在10 mA/cm下具有32.56 mAh/cm的高比容量和36.04 mWh/cm的能量密度。作为概念验证,针织集成的eG/P-Zn@SFB在0°至180°的不同弯曲角度下作为有效电源,展示了其在可拉伸柔性电子和可穿戴能源纺织品中的潜在应用和广阔前景。

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