电解质
材料科学
氧化物
离子电导率
离子键合
快离子导体
固体氧化物燃料电池
弯曲
燃料电池
纳米技术
化学工程
复合材料
离子
化学
电极
物理化学
工程类
冶金
有机化学
作者
Yupei Han,Minda Zou,Weiqiang Lv,Yiwu Mao,Wei Wang,Weidong He
摘要
Flexible power sources including fuel cells and batteries are the key to realizing flexible electronic devices with pronounced foldability. To understand the bending effects in these devices, theoretical analysis on three-dimensional (3-D) lattice bending is necessary. In this report, we derive a 3-D analytical model to analyze the effects of electrolyte crystal bending on ionic conductivity in flexible solid-state batteries/fuel cells. By employing solid oxide fuel cells as a materials' platform, the intrinsic parameters of bent electrolyte materials, including lattice constant, Young's modulus, and Poisson ratio, are evaluated. Our work facilitates the rational design of highly efficient flexible electrolytes for high-performance flexible device applications.
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