材料科学
电化学
锂(药物)
无定形固体
化学工程
涂层
阴极
锂离子电池
电化学动力学
磷酸铁锂
电池(电)
电极
无机化学
纳米技术
化学
结晶学
物理化学
工程类
内分泌学
功率(物理)
物理
医学
量子力学
作者
Seunghyeop Baek,Jihun Roh,Jangwook Pyun,Y. S. Lee,Sang Ki Lee,Seung‐Tae Hong,Namhyung Kim,Munseok S. Chae
标识
DOI:10.1002/batt.202500207
摘要
The advancement of high‐voltage lithium‐ion batteries necessitates the use of cathode materials with improved electrochemical performance and cycling stability. Herein, an amorphous Li 2 B 4 O 7 coating effectively enhances the electrochemical properties of LiMn 0.6 Fe 0.4 PO 4 (LMFP) cathodes is demonstrated. Specifically, the Li 2 B 4 O 7 layer improves lithium‐ion conductivity while suppressing manganese dissolution induced by Jahn‐Teller distortion, both of which are critical factors affecting LMFP stability. Structural and electrochemical analyses reveal that the amorphous coating reduces Coulomb repulsion, lowers the energy barrier for lithium‐ion migration, and enhances charge transfer kinetics. The coated LMFP demonstrates a high discharge capacity of 143.9 mAh g −1 at 20 mA g −1 and exhibits excellent cycling stability, retaining 94.6% of its capacity after 1000 cycles at 600 mA g −1 . Furthermore, the amorphous Li 2 B 4 O 7 coating enhances rate capability by facilitating rapid ion transport. These findings underscore the potential of Li 2 B 4 O 7 as a multifunctional coating material for advanced lithium‐ion battery cathodes, presenting a scalable and effective strategy for next‐generation energy storage applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI