Cite this article:
Jie-Nan Zhang, Qing-Hao Li, Quan Li, Xi-Qian Yu, Hong Li. Improved electrochemical performances of high voltage LiCoO2 with tungsten dopingJ. Chin. Phys. B, 2018, 27(8): 088202.
| Jie-Nan Zhang, Qing-Hao Li, Quan Li, Xi-Qian Yu, Hong Li. Improved electrochemical performances of high voltage LiCoO2 with tungsten dopingJ. Chin. Phys. B, 2018, 27(8): 088202. |
Improved electrochemical performances of high voltage LiCoO2 with tungsten doping
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Abstract
The effects of tungsten W doping and coating on the electrochemical performance of LiCoO2 cathode are comparatively studied in this work. The amount of modification component is as low as 0.1 wt% and 0.3 wt% respectively. After 100 cycles between 3.0 V-4.6 V, 0.1 wt% W doping provides an optimized capacity retention of 72.3%. However, W coating deteriorates battery performance with capacity retention of 47.8%, even lower than bare LiCoO2 of 55.7%. These different electrochemical performances can be attributed to the surface aggregation of W between doping and coating methods. W substitution is proved to be a promising method to develop high voltage cathodes. Practical performance relies on detailed synthesis method. -
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