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调控锂的溶剂化结构助力硅基负极化学预锂化以实现高能锂离子电池

Regulating the Solvation Structure of Li Enables Chemical Prelithiation of Silicon-Based Anodes Toward High-Energy Lithium-Ion Batteries.

作者信息

He Wenjie, Xu Hai, Chen Zhijie, Long Jiang, Zhang Jing, Jiang Jiangmin, Dou Hui, Zhang Xiaogang

机构信息

Jiangsu Key Laboratory of Electrochemical Energy Storage Technologies, College of Material Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, People's Republic of China.

School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo, 454003, People's Republic of China.

出版信息

Nanomicro Lett. 2023 Apr 18;15(1):107. doi: 10.1007/s40820-023-01068-8.

Abstract

The solvation structure of Li in chemical prelithiation reagent plays a key role in improving the low initial Coulombic efficiency (ICE) and poor cycle performance of silicon-based materials. Nevertheless, the chemical prelithiation agent is difficult to dope active Li in silicon-based anodes because of their low working voltage and sluggish Li diffusion rate. By selecting the lithium-arene complex reagent with 4-methylbiphenyl as an anion ligand and 2-methyltetrahydrofuran as a solvent, the as-prepared micro-sized SiO/C anode can achieve an ICE of nearly 100%. Interestingly, the best prelithium efficiency does not correspond to the lowest redox half-potential (E), and the prelithiation efficiency is determined by the specific influencing factors (E, Li concentration, desolvation energy, and ion diffusion path). In addition, molecular dynamics simulations demonstrate that the ideal prelithiation efficiency can be achieved by choosing appropriate anion ligand and solvent to regulate the solvation structure of Li. Furthermore, the positive effect of prelithiation on cycle performance has been verified by using an in-situ electrochemical dilatometry and solid electrolyte interphase film characterizations.

摘要

化学预锂化试剂中锂的溶剂化结构在改善硅基材料较低的初始库仑效率(ICE)和较差的循环性能方面起着关键作用。然而,化学预锂化剂由于其工作电压低和锂扩散速率缓慢,难以在硅基阳极中掺杂活性锂。通过选择以4-甲基联苯为阴离子配体、2-甲基四氢呋喃为溶剂的锂-芳烃络合物试剂,制备的微米级SiO/C阳极可实现接近100% 的ICE。有趣的是,最佳预锂化效率并不对应于最低的氧化还原半电位(E),预锂化效率由特定的影响因素(E、锂浓度、去溶剂化能和离子扩散路径)决定。此外,分子动力学模拟表明,通过选择合适的阴离子配体和溶剂来调节锂的溶剂化结构,可以实现理想的预锂化效率。此外,通过原位电化学膨胀法和固体电解质界面膜表征,验证了预锂化对循环性能的积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e002/10113421/7c82cadc8d7d/40820_2023_1068_Figa_HTML.jpg

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