石墨
阳极
材料科学
电化学
电池(电)
锂离子电池
纳米技术
耐久性
离子
电化学储能
锂(药物)
扩散
Boosting(机器学习)
储能
化学工程
数码产品
导电体
锂电池
工作(物理)
钾离子电池
集电器
阴极
作者
Fangcheng Qiu,Xiangbo Wang,Yufeng Song,Haokun Shi,Xin Zheng,Hanyu Li,Ronghai Liu,Xinliang Guo,Yaqun Wang,Ze Yang
标识
DOI:10.1002/cplu.202500732
摘要
Although graphite is widely used as the primary anode material in commercial lithium-ion batteries, it suffers from inherent limitations in specific capacity, rate capability, and long-term cycling stability. To overcome these challenges, this study successfully introduced fluorinated graphdiyne into graphite anodes via a simple and cost-effective physical mixing approach. These findings indicate that fluorinated graphdiyne modified graphite (F-G) effectively reduce the energy barrier for lithium ions migration, enhance ion diffusion within graphite electrodes, significantly reduce interfacial impedance, and suppress harmful side reactions. As a result, the cycle durability of the battery is improved. This work provides theoretical insights into the regulatory mechanism of modification on the electrochemical performance of graphite anodes, offering a new perspective for the design of high-performance lithium-ion battery materials, with certain scientific and practical significance.
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