作者
Zhumabay Bakenov, Izumi Taniguchi
发表日期
2010/2/18
期刊
Journal of the Electrochemical Society
卷号
157
期号
4
页码范围
A430
出版商
IOP Publishing
简介
The composite cathode was successfully prepared by a combination of spray pyrolysis and wet ballmilling with heat-treatment. The composite cathode had narrow particle size distribution with an average particle size of 99 nm. The Mg doping on the Mn site led to the electrochemical performance enhancement of the composite cathode, which was confirmed by cyclic voltammetry, ac impedance spectroscopy, and charge–discharge tests. The Mg-doped composite cathode exhibited a high discharge capacity in lithium cell, which remarkably increased with an increase in the charge cutoff voltage under galvanostatic charge–discharge. The cathode exhibited a discharge capacity of (above 93% of the theoretical value) at 0.1 C when charge–discharged galvanostatically to 4.9 V. Along with enhanced discharge capacity, the cell exhibited a good rate capability under the galvanostatic charge–discharge. Under the …
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