降级(电信)
共沉淀
纹理(宇宙学)
晶间腐蚀
结构稳定性
结晶学
晶体结构
阴极
电化学
表征(材料科学)
压力(语言学)
材料科学
化学工程
冶金
化学
计算机科学
纳米技术
微观结构
结构工程
电极
人工智能
物理化学
哲学
工程类
图像(数学)
电信
语言学
作者
Lang Qiu,Mengke Zhang,Yang Song,Zhenguo Wu,Yan‐Fang Zhu,Jun Zhang,Dong Wang,Haiyan Hu,Hongwei Li,Hang‐Rui Liu,Xin‐Bei Jia,Jian Peng,Shuangqiang Chen,Zuguang Yang,Yao Xiao,Xiaodong Guo
摘要
Abstract The crystal plane plays a very important role in the properties of Ni‐rich cathodes. [003] crystallographic texture regulation has been proven to improve structural stability, and yet, the discrepancy of particles with different exposed ratios of [003] in structural attenuation has not been clarified. Herein, we have unraveled comprehensively the structural decay difference for Ni‐rich cathodes’ primary particles with the different percentages of exposed [003] by regulating the precursor coprecipitation process. The findings based on structural characterization, first‐principles calculations, finite element analysis, and electrochemical test reveal that the length and width of particles represent and [003] directions, respectively, and show that cathode particles with a higher /[003] ratio can effectively inhibit structure degradation and intergranular/intragranular crack formation owing to the low oxygen vacancy formation energy on (003) planes and the small local stress on secondary/primary particles. This study may provide guidance for the structural design of layered cathodes.
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