材料科学
阳极
锂(药物)
动力学
化学工程
离子
石墨
化学动力学
无机化学
锂离子电池
化学
电极
反应机理
反应速率常数
作者
Sheng Wang,Jinze Song,Kaihua Li,Wenlei Wang,Jiajin Li,Haoyu Qi,Haoran Xiong,Yunling Wu,Lijun Fu,Lijun Fu,Yuping Wu,Yuping Wu
出处
期刊:Energy & Fuels
[American Chemical Society]
日期:2026-07-02
卷期号:40 (28): 15531-15539
标识
DOI:10.1021/acs.energyfuels.6c01293
摘要
Commercial graphite anodes are widely used in lithium-ion batteries (LIBs) because of their low cost, high theoretical capacity, and low lithium intercalation/deintercalation potential. However, they suffer from inferior fast-charging performance and low-temperature performance, which are closely related to the composition of the solid electrolyte interphase (SEI). In this study, niobium pentoxide (Nb 2 O 5 ) was applied as a surface modification on graphite to modulate the interfacial composition, thereby enhancing the rate capability and the cycling life of the anode. The Nb 2 O 5 modification promotes the enrichment of PF 6 – anions in the solvation structure at the graphite interface, leading to lower desolvation energy and formation of an SEI richer in LiF. This LiF-rich SEI further enhances the transport through the interface, significantly improving the fast-charging performance. As a result, the Nb 2 O 5 -modified graphite electrode (Gr-Nb 2 O 5 ) delivers a specific capacity of 142.2 mA h g –1 at a high current density of 2000 mA g –1 and maintains 88.9% of its capacity after 2500 cycles. The modified graphite electrode also shows superior low-temperature performance. This work presents a simple, yet highly effective, strategy for optimizing graphite anodes through surface modification.
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