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作 者:Yinan Yang Yanyan Shao Guoqing Lu Yuanlong Shao
机构地区:[1]School of Materials Science Engineering,Peking University,Beijing 100871,China [2]College of Energy Soochow Institute for Energy and Materials Innovations(SIEMIS),Key Laboratory of Advanced Carbon Materials and Wearable Energy Technologies of Jiangsu Province,SUDA‑BGI Collaborative Innovation Center,Soochow University,Suzhou 215006,China [3]School of Materials Science and Engineering,Shanghai University of Engineering Science,Shanghai 201620,China
出 处:《Advanced Fiber Materials》2024年第4期949-951,共3页先进纤维材料(英文)
基 金:supported by the MOST(2022YFA1203302,2022YFA1203304 and 2018YFA0703502);NSFC(Grant Nos.52021006,T2188101);Gusu’s young leading talent(ZXL2021449);Key industry technology innovation project of Suzhou(SYG202108).
摘 要:The energy supply of rising electronic textile can resort to gel-based fibre batteries attributed to their flexibility and safety.However,their electrochemical performance is plagued by the poor electrolyte–electrode interface.Recently,Peng et al.designed channel structures to accommodate gel electrolyte yielding intimate and stable interfaces for high-performance fibre batteries.Encompassing excellent electrochemical performance,stability,safety and large-scale productivity,the as-fabricated fibre lithium-ion batteries(FLBs)demonstrated the potential to supply energy for textile electronics.
关 键 词:Fibre lithium-ion batteries Polymer gel electrolyte Electrolyte–electrode interface Textile electronics
分 类 号:TM91[电气工程—电力电子与电力传动]
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