电池(电)
数码产品
阳极
储能
材料科学
阴极
纳米技术
锌
计算机科学
电气工程
工程类
电极
化学
物理化学
功率(物理)
物理
量子力学
冶金
作者
Ye Zeng,Jin Liang,Jiaxian Zheng,Zihao Huang,Xiaoyi Zhang,Guoyin Zhu,Zhoucheng Wang,Hanfeng Liang,Yizhou Zhang
摘要
Flexible zinc ion batteries are a promising energy supply for flexible and wearable electronic devices due to their high theoretical capacity, superior safety, low cost, and eco-friendliness. The rational design of highly efficient flexible zinc ion batteries with high electrochemical performance, long cycling life, and excellent mechanical deformability is still a formidable challenge, limiting their widespread application in flexible electronics. This paper summarizes the recent progress in designing and fabricating flexible zinc ion batteries from three aspects: device configurations, battery constituent components, and practical applications. First, we introduce the energy storage mechanism and summarize modification strategies of constituent components, including current collector, zinc anode, cathode, and solid/gel electrolyte, revealing their positive effects on the performance of flexible zinc ion batteries. Then, we elucidate advanced device configurations for flexible zinc ion batteries such as sandwich-type, planar, and fiber-type structures, followed by discussion on the specific properties of flexible zinc ion batteries that enhance their adaptability in practical applications, such as integration with electronics, self-healing ability, resistance to extreme conditions, and responsiveness to environments. The current challenges and outlooks are also presented.
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