材料科学
腐蚀
阴极
锂(药物)
电池(电)
锂离子电池
离子
冶金
化学工程
电气工程
量子力学
医学
物理
工程类
内分泌学
功率(物理)
作者
Biao Yang,Bo Yin,Han Chen,Yifeng Zheng
摘要
Abstract LiCoO 2 has become the most widely used cathode material in lithium‐ion batteries because of its high capacity and excellent stability. The high‐temperature solid‐state method is commonly used for the preparation of LiCoO 2 . However, this method will produce highly penetrating Li 2 O, which causes spall or fracture of the insulating refractory materials in the kiln. In this study, the corrosion resistance of bubble alumina, mullite, and calcium hexaaluminate (CA 6 ) insulating refractories to LiCoO 2 has been thoroughly investigated. Combining the laboratory‐scale interfacial reaction experiments with post‐experimental life cycle analysis of industrial insulating refractories, the interaction between the insulating refractory materials and LiCoO 2 after calcination at 900°C for 5 h and the corrosion behavior of LiCoO 2 on different insulating refractory materials following heat treatment at 900°C for 5 h every time and repeated seven times are investigated. The corrosion mechanisms are concluded by analyzing the physicochemical composition and macro‐ and micromorphology of the three insulating refractory materials before and after corrosion. The results can provide a basis for the use of insulating refractories in the development of lithium batteries.
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