锂(药物)
电化学
材料科学
锂钴氧化物
磷酸钒锂电池
涂层
阴极
离子
磷酸铁锂
化学工程
表面改性
无机化学
锂离子电池
纳米技术
电极
化学
电池(电)
有机化学
内分泌学
工程类
物理化学
功率(物理)
物理
医学
量子力学
作者
Ying Sun,Jingjing Zhang,Tao Huang,Aishui Yu
标识
DOI:10.1016/j.elecom.2024.107726
摘要
The active lithium ions loss during the initial charge and discharge process of lithium ion batteries seriously hampers its increasement of energy density. Pre-lithiation, involving the pre-storage of active lithium ions prior to cycling, emerges as a promising and effective strategy to offset this loss and Li6CoO4 has been identified as a candidate capable of releasing adequate lithium ions to compensate for such losses. However, its poor air stability renders it susceptible to side reactions in the atmosphere, leading to the formation of residual lithium and consequently affecting its electrochemical performance. In this study, we propose application of a lithium aluminate (LiAlO2) coated onto the surface of lithium cobalt oxide (Li6CoO4) to mitigate the presence of residual lithium. Meanwhile, with decreasing of residual lithium, the rate capability is also enhanced. The research results demonstrate that samples treated with this coating layer exhibit an enhanced energy density in the full cell, indicating the efficacy of this approach in optimizing the electrochemical performance of prelithiation additives.
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