Bulletin of the Korean chemical society | |
The Origin of the Residual Carbon in LiFePO4 Synthesized by Wet Milling | |
Chang Kyoo Park1  Jin Tae Hwang1  Ho Jang1  Won Il Cho1  Sung Bin Park1  | |
关键词: Lithium iron phosphate; Wet milling; Mechanochemical reaction; Rate capability; Carbon coating; | |
DOI : | |
学科分类:化学(综合) | |
来源: Korean Chemical Society | |
【 摘 要 】
This study reports the origin of the electrochemical improvement of LiFePO4 when synthesized by wet milling using acetone without conventional carbon coating. The wet milled LiFePO4 delivers 149 mAhg‒1 at 0.1 C, which is comparable to carbon coated LiFePO4 and approximately 74% higher than that of dry milled LiFePO4, suggesting that the wet milling process can increase the capacity in addition to conventional carbon coating methods. UV spectroscopy, elemental microanalysis, and evolved gas analysis are used to find the root cause of the capacity improvement during the mechanochemical reaction in acetone. The analytical results show that the improvement is attributed to the conductive residual carbon on the surface of the wet milled LiFePO4 particles, which is produced by the reaction of FeC2O4· 2H2O with acetone during wet milling through oxygen deficiency in the precursor.
【 授权许可】
Unknown
【 预 览 】
Files | Size | Format | View |
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RO201912010242781ZK.pdf | 948KB | download |