兴奋剂
材料科学
电化学
阴极
法拉第效率
氟化物
离子
化学工程
表面改性
纳米技术
无机化学
电极
化学
光电子学
物理化学
工程类
有机化学
作者
Wenbo Li,Jinyang Dong,Yong Zhao,Jiayu Zhao,Haoyu Wang,Ning Li,Yun Lu,Jianan Hao,Yujia Wu,Youyou Fang,Yali Li,Qiongqiong Qi,Yuefeng Su,Feng Wu,Lai Chen
标识
DOI:10.1016/j.jcis.2024.07.004
摘要
Li-rich Mn-based (LMR) layered oxides are considered promising cathode materials for high energy-density Li-ion batteries. Nevertheless, challenges such as irreversible oxygen loss at the surface during the initial charge, alteration of the bulk structure, and poor rate performance impede their path to commercialisation. Most modification methods focus on specific layers, making the overall impact of modifications at various depths on the properties of materials unclear. This research presents an approach by using doping to adjust both surface and bulk properties; the materials with surface and bulk fluoride anion doping are synthesised to explore the connection between doping depth, structural and electrochemical stability. The surface-doped material significantly improves the initial Coulombic efficiency (ICE) from 77.85% to 85.12% and limits phase transitions, yet it does not enhance rate performance. Conversely, doping in bulk stands out by improving both rate performance and cyclic stability: it increases the specific discharge capacity by around 60 mAh g
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