用于高压固态锂电池的聚合物基电解质

Zixuan Wang, Jianxiong Chen, Jialong Fu, Zhiyong Li, Xin Guo
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引用次数: 0

摘要

提高锂电池的充电截止电压是一种提高能量密度的可行方法。然而,当电池在高电压(> 4.3 V)下工作时,液态有机碳酸盐电解质会加速降解,并可能造成安全隐患。聚合物基电解质具有固有的高安全性和良好的电化学稳定性,可以防止高压固态锂电池中的电解质降解。本文全面深入地综述了高压应用中聚合物基电解质的设计策略、最新发展以及相关的科学挑战。重点关注电解质与阴极之间的界面兼容性,如机械接触和界面化学稳定性,这对高压锂电池的寿命至关重要。此外,还讨论了未来开发高压固态锂电池的指导方针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymer-based electrolytes for high-voltage solid-state lithium batteries
Increasing the charging cut-off voltage of lithium batteries is a feasible method to enhance the energy density. However, when batteries operate at high voltages (> 4.3 V), the degradation of liquid organic carbonate electrolyte is accelerated and may cause safety hazards. Polymer-based electrolytes with inherently high safety and good electrochemical stability can prevent the electrolyte degradation in high-voltage solid-state lithium batteries. This paper provides a comprehensive and in-depth review of the design strategies, recent developments, and scientific challenges associated with polymer-based electrolytes for high-voltage applications. Emphases are placed on the interfacial compatibility between electrolytes and cathodes, such as mechanical contacts and interface chemical stability, which are critical to the lifespan of high-voltage lithium batteries. Moreover, guidelines for the future development of high-voltage solid-state lithium batteries are also discussed.
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