Electrochemical Synthesis of LiFePO_4 Cathode Materials Precursor
Wei Yinye
Abstract
Wei Yinye
Abstract
LiFePO4 precursor was synthesized by electrochemical method using NH4H2PO4,lithium salt and pure iron as main raw material,and lithium ion battery positive electrode material LiFePO4/C was synthesized by LiFePO4 precursor.The crystalline structure,morphology and electrochemical performances of LiFePO4/C were investigated by X-ray diffraction,scanning electromicroscope,and charge-discharge measurements.The results show that LiFePO4/C is simple pure phase olivine-type crystal structure.It is noted that the LiFePO4/C composite cathode materials have small and uniform particle sizes,and thus excellent electrochemical performance with the first discharge specific capacity of 142.3mAh/g at the rate of 0.2C.After 30times cycling,the discharge specific capacity is 141.2mAh/g.
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LiFePO4 precursor was synthesized by electrochemical method using NH4H2PO4,lithium salt and pure iron as main raw material,and lithium ion battery positive electrode material LiFePO4/C was synthesized by LiFePO4 precursor.The crystalline structure,morphology and electrochemical performances of LiFePO4/C were investigated by X-ray diffraction,scanning electromicroscope,and charge-discharge measurements.The results show that LiFePO4/C is simple pure phase olivine-type crystal structure.It is noted that the LiFePO4/C composite cathode materials have small and uniform particle sizes,and thus excellent electrochemical performance with the first discharge specific capacity of 142.3mAh/g at the rate of 0.2C.After 30times cycling,the discharge specific capacity is 141.2mAh/g.
Key concepts: Materials science, Lithium iron phosphate, Electrochemistry, Lithium-ion battery, Lithium (medication), Cathode, Chemical engineering, Composite number