材料科学
阴极
兴奋剂
相(物质)
锂(药物)
相变
化学稳定性
氧化物
化学物理
化学工程
热力学
光电子学
物理化学
冶金
工程类
内分泌学
物理
有机化学
化学
医学
作者
Ji Hwan Kim,Juncheol Hwang,Young‐Hoon Lee,Seok Hyun Song,Jaewoon Lee,Si-Hwan Lee,Won‐Jin Moon,Hyungsub Kim,Duho Kim,Seung‐Ho Yu,Yung‐Eun Sung
标识
DOI:10.1021/acsami.3c13260
摘要
The use of elemental doping in lithium cobalt oxide (LCO) cathode material at high cutoff voltage is a widely adopted technique in the field of rechargeable batteries to mitigate multiple unfavorable phase transitions. However, there is still a lack of fundamental understanding regarding the rationality of each doping element implemented in this method, specifically considering the various thermodynamic stability and phase transitions. Herein, we investigated the effect of Ti doping on an O2 phase LCO (LCTO) cathode material that exhibited enhanced rate performance. We suggest that the incorporation of Ti into an O2 phase LCO results in the mitigation of multiple-phase transitions and the improvement of phase stability, thereby yielding a high-rate-capable cathode material. Through a combination of experimental and computational calculations, we demonstrate that Ti doping improves the thermodynamic stability and kinetics of Li-ions during the cycling process.
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