电极
材料科学
间断(语言学)
扩散
复合材料
锂(药物)
不连续性分类
压力(语言学)
相(物质)
粒子(生态学)
电池(电)
工作(物理)
热力学
化学
医学
数学分析
语言学
物理
数学
哲学
有机化学
物理化学
海洋学
功率(物理)
地质学
内分泌学
作者
Rutooj D. Deshpande,Yang‐Tse Cheng,Mark W. Verbrugge,Adam Timmons
摘要
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stresses (DISs) which may cause fracture and decrepitation of electrodes. Many lithium ion electrode materials undergo formation of two or more phases during lithium insertion or removal. In this work, we mathematically investigate the DISs in phase transforming electrodes using a core-shell structural model. We examine the concentration jumps at phase boundaries that result in stress discontinuities, which in turn can cause cracking. The influence of the mechanical properties of the two phases on stress evolution, stress discontinuity, and strain energy are clarified. The trends obtained with the model may be used to help tune electrode materials with appropriate interfacial and bulk properties so as to increase the durability of battery electrodes.
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