Logo image
Discovered Intermediate Phase and Improved Electrochemical Performance of Zn-Doped LiCoPO4for High-Energy Li-Ion Batteries
期刊文章

Discovered Intermediate Phase and Improved Electrochemical Performance of Zn-Doped LiCoPO4for High-Energy Li-Ion Batteries

Jianyuan WuCho-Jen Tsai
ACS Applied Energy Materials
2021

摘要

high-voltage cathode intermediate phase lithium cobalt phosphate lithium-ion battery Zn-doping Chemical Engineering (miscellaneous) Energy Engineering and Power Technology Electrochemistry Electrical and Electronic Engineering Materials Chemistry
To improve the intrinsic electrochemical properties of LiCoPO4 (LCP), a promising high-energy cathode material, we explored the effects of Zn-doping on the material structure and electrochemical properties of LCP. During the delithiation/lithiation process, besides the reported intermediate phase Li2/3Co1-nZnnPO4, an unreported intermediate phase Li1/2Co1-nZnnPO4 was observed by electrochemical test and in situ X-ray diffraction. The reason for the appearance of the intermediate phase was revealed by Gibbs free energy diagram. Two conjectured configurations of Li1/2Co1-nZnnPO4 were proposed. The redox potential and the conductivity of Zn-doped LCP will increase with doping concentration, resulting in improved rate capability, cycle life, and energy efficiency.

相關連結

指標

1 檢視次數

詳細資料

Logo image