氧化还原
镍
材料科学
阴极
离子键合
锂(药物)
动力学
电极
原电池
化学工程
单晶
离子
分析化学(期刊)
无机化学
化学
结晶学
物理化学
冶金
物理
内分泌学
有机化学
工程类
医学
量子力学
色谱法
作者
Mingyuan Ge,Sungun Wi,Xiang Liu,Jianming Bai,Steven N. Ehrlich,Deyu Lu,Wah‐Keat Lee,Zonghai Chen,Feng Wang
标识
DOI:10.1002/anie.202012773
摘要
Abstract High‐nickel cathodes attract immense interest for use in lithium‐ion batteries to boost Li‐storage capacity while reducing cost. For overcoming the intergranular‐cracking issue in polycrystals, single‐crystals are considered an appealing alternative, but aggravating concerns on compromising the ionic transport and kinetic properties. We report here a quantitative assessment of redox reaction in single‐crystal LiNi 0.8 Mn 0.1 Co 0.1 O 2 using operando hard X‐ray microscopy/spectroscopy, revealing a strong dependence of redox kinetics on the state of charge (SOC). Specifically, the redox is sluggish at low SOC but increases rapidly as SOC increases, both in bulk electrodes and individual particles. The observation is corroborated by transport measurements and finite‐element simulation, indicating that the sluggish kinetics in single‐crystals is governed by ionic transport at low SOC and may be alleviated through synergistic interaction with polycrystals integrated into a same electrode.
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