Enhanced High-Temperature Performance of LiNi0.6Co0.2Mn0.2O2 Positive Electrode Materials by the Addition of nano-Al2O3 during the Synthetic Process

被引:2
|
作者
Park, Ji Min [1 ]
Kim, Daeun [1 ,2 ]
Kim, Hae Bin [1 ]
Bae, Joong Ho [1 ]
Lee, Ye-Ji [1 ]
Myoung, Jae In [1 ]
Hwang, Eunkyoung [1 ]
Yim, Taeeun [3 ]
Song, Jun Ho [4 ]
Yu, Ji-Sang [4 ]
Ryu, Ji Heon [5 ]
机构
[1] Korea Polytech Univ, Dept Chem Engn & Biotechnol, 237 Sangidaehak Ro, Siheung Si 15073, Gyeonggi Do, South Korea
[2] Chung Ang Univ, Sch Integrat Engn, Seoul 06974, South Korea
[3] Incheon Natl Univ, Dept Chem, Incheon 22012, South Korea
[4] Korea Elect Technol Inst, Adv Batteries Res Ctr, Seongnam, South Korea
[5] Korea Polytech Univ, Grad Sch Knowledge Based Technol & Energy, 237 Sangidaehak Ro, Siheung Si 15073, Gyeonggi Do, South Korea
来源
关键词
high-Ni content layered oxide; nano-Al2O3; high temperature performance; thermal stability; lithium-ion batteries;
D O I
10.5229/JKES.2016.19.3.80
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
High Ni content layered oxide materials for the positive electrode in lithium-ion batteries have high specific capacity. However, their poor electrochemical and thermal stability at elevated temperature restrict the practical use. A small amount of Al2O3 was added to the mixture of transition metal hydroxide and lithium hydroxide. The LiNi0.6Co0.2Mn0.2O2 was simultaneously doped and coated with Al2O3 during heat-treatment. Electrochemical characteristics of modified LiNi0.6Co0.2Mn0.2O2 were evaluated by the galvanostatic cycling and the LSTA(linear sweep thermmametry) at the constant voltage conditions. The nano-sized Al2O3 added materials show better cycle performance at elevated temperature than that of micro-sized Al2O3. As the added amount of nano-Al2O3 increased, the thermal stability of electrode also enhanced, but the use of 2.5 mol% Al showed the best high temperature performance.
引用
收藏
页码:80 / 86
页数:7
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