格子(音乐)
微晶
晶体结构
结晶学
降级(电信)
阴极
镍
衍射
材料科学
化学
化学工程
化学物理
纳米技术
冶金
物理
计算机科学
光学
工程类
声学
物理化学
电信
作者
Weiyuan Huang,Tongchao Liu,Yu Lei,Jing Wang,Tao Zhou,Junxiang Liu,Tianyi Li,Rachid Amine,Xianghui Xiao,Mingyuan Ge,Lu Ma,Steven N. Ehrlich,Martin V. Holt,Jianguo Wen,Khalil Amine
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-05-23
卷期号:384 (6698): 912-919
被引量:52
标识
DOI:10.1126/science.ado1675
摘要
Transitioning from polycrystalline to single-crystalline nickel-rich cathodes has garnered considerable attention in both academia and industry, driven by advantages of high tap density and enhanced mechanical properties. However, cathodes with high nickel content (>70%) suffer from substantial capacity degradation, which poses a challenge to their commercial viability. Leveraging multiscale spatial resolution diffraction and imaging techniques, we observe that lattice rotations occur universally in single-crystalline cathodes and play a pivotal role in the structure degradation. These lattice rotations prove unrecoverable and govern the accumulation of adverse lattice distortions over repeated cycles, contributing to structural and mechanical degradation and fast capacity fade. These findings bridge the previous knowledge gap that exists in the mechanistic link between fast performance failure and atomic-scale structure degradation.
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