材料科学
相间
法拉第效率
电解质
金属锂
金属
结构稳定性
电化学
枝晶(数学)
复合材料
变形(气象学)
阳极
弹性模量
压力(语言学)
化学工程
锂(药物)
冶金
结构工程
电极
内分泌学
哲学
物理化学
遗传学
工程类
化学
几何学
语言学
数学
生物
医学
作者
Xin Shen,Rui Zhang,Xiang Chen,Xin‐Bing Cheng,Xiaoyan Li,Qiang Zhang
标识
DOI:10.1002/aenm.201903645
摘要
Abstract Practical application of lithium (Li) metal anodes has been hindered by Li dendrite growth, which renders a low Coulombic efficiency and short lifespan of working Li metal batteries. A stable solid electrolyte interphase (SEI) is crucial in suppressing the formation of Li dendrites. Herein the local stress and deformation evolvement status of a SEI layer during Li electrodeposition are investigated through a quantitative electrochemical–mechanical model based on a finite element method. Furthermore, the impacts of structural uniformity and mechanical strength on the stability of the SEI under different working conditions are investigated. Improving the structural uniformity of SEI is the most effective way to enhance the stability of SEI, which regulates ion transportation. In addition, pursuing extremely high mechanical strength is shown to be pointless, and a moderate elastic modulus of 3.0 GPa is suggested. This work affords an insight into the rational design of stable SEI layers and sheds light on a possible pathway toward practical applications of Li metal anodes.
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