Synthesis of Iron Phosphate Via Coprecipitation Method for LiFePO4 Cathode

被引:0
|
作者
Lim, Jeongwoo [1 ]
Seo, Seokwon [1 ]
Kim, Chunjoong [1 ]
机构
[1] Chungnam Natl Univ, Dept Mat Sci, Daejeon 34134, South Korea
来源
KOREAN JOURNAL OF MATERIALS RESEARCH | 2024年 / 34卷 / 10期
关键词
LiFePO4; coprecipitation; iron phosphate; FePO4; lithium ion battery; ELECTROCHEMICAL PERFORMANCE; CARBON;
D O I
10.3740/MRSK.2024.34.10.482
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this study, ferric phosphate precursors were prepared by controlling precipitation time, and the resulting LiFePO4 active materials were thoroughly investigated. Microscale LiFePO4 cathode materials, designed for high energy density at the cell level, were successfully synthesized through a 10 h co-precipitation. As the reaction time increased, smaller primary particles were aggregated more tightly, and the secondary particles exhibited a more spherical shape. Meanwhile, ammonia did not work effectively as a complexing agent. The carbon coated LiFePO4 (LiFePO4 /C) synthesized from the 10 h ferric phosphate precursor exhibited larger primary and secondary particle sizes, a lower specific surface area, and higher crystallinity due to the sintering of the primary particles. Enhanced battery performance was achieved with the LiFePO4 /C that was synthesized from the precursor with the smaller size, which exhibited the discharge capacity of 132.25 mAh center dot g(-1) at 0.1 C, 70 % capacity retention at 5 C compared with 0.1 C, and 99.9 % capacity retention after the 50th cycle. The better battery performance is attributed to the lower charge transfer resistance and higher ionic conductivity, resulting from smaller primary particle sizes and a shorter Li+ diffusion path.
引用
收藏
页码:482 / 490
页数:9
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