Improvement of Electrochemical Performance of Nickel Rich LiNi 0.8 Co 0.1 Mn 0.1 O 2 Cathode by Lithium Aluminates Surface Modifications
作者:Jianxin Wu, Xinghua Tan, Jiangtao Zhang, Limin Guo, Yi Jiang, Shengnan Liu, Tingqiao Zhao, Yanlin Liu, Juncong Ren, Hanfu Wang, Xiaohong Kang, Weiguo Chu · 发表于:Energy Technology · 年份:2018 · DOI:10.1002/ente.201800506 · 被引用次数:20 · 研究领域:Advancements in Battery Materials、Advanced Battery Materials and Technologies、Extraction and Separation Processes
Abstract Ni‐rich layered compounds are very promising cathodes for lithium ion batteries whose surface modifications are normally required. As excellent lithium‐conducting solid electrolytes lithium aluminates such as LiAlO 2 are expected to have an important role to play as a candidate for surface modifications. Here, Ni‐rich layered LiNi 0.8 Co 0.1 Mn 0.1 O 2 (NCM) coated by lithium aluminates with different nominal weight percentages was prepared using a sol‐gel method. Lithium aluminates are found to be a mixture of major LiAlO 2 and minor Li 5 AlO 4 . The coatings almost have no influence on the size and morphology of NCM particles, and however favor the order degree of structure and change the surface states. The electrical conductivity and charge transfer resistance can be optimized by controlling the amount of lithium aluminates. The cycling stability at low rates such as 1 C tends to increase with the amount of lithium aluminates whereas the rate capability can be achieved at certain amount, which is probably related to the enhancement of electrical conductivity and the improved surface protection against the erosion by electrolyte. This study reveals that the performances of NCM can be significantly improved and tailored by controlling the amount of lithium aluminates.