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超宽温度下用于高压和高倍率锂电池的竞争性离子-分子配位相互作用

Competitive ion-molecule-coordinated interactions for high-voltage and high-rate lithium batteries under ultra-wide temperature.

作者信息

Wang Weihao, Luo Qiao, Zhou Liangjun, Liao Xuanyuan, Yu Hao, Ma Li, Xu Yaowen, Meng Qingfei, Qi Yuyang, Chen Yuejiao, Chen Libao, Wei Weifeng

机构信息

State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China.

State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China.

出版信息

Sci Bull (Beijing). 2025 Aug 15;70(15):2483-2492. doi: 10.1016/j.scib.2025.04.011. Epub 2025 Apr 4.

Abstract

The sluggish ion transport and deteriorating electrode-electrolyte interphase hinder the performance of lithium-ion batteries under wide temperature operation, thereby posing substantial challenges in improving both high-voltage and high-rate performance. Herein, the competitive ion-molecule-coordinated interactions (Li-anion-solvent-diluent) achieve a balance that directs an anion-dominated and moderate diluent-interacting solvation structure, resulting in an excellent wide-temperature electrolyte with electrochemical stability up to 5.4 V and high Li-ion conductivity (1.034 mS/cm at -60 °C). The corresponding NCM811||Li cells exhibit capacity retention ratios of 90.74% after 200 cycles at -40 °C and 54.68% for 250 cycles at 70 °C. Additionally, the cell achieves stable cycling performance at a high rate of 10 C at 25 °C. Notably, the assembled NCM811||Graphite pouch battery (3 Ah) can be operated at -106 °C and possesses 2.6 Ah at -30 °C, with 90.28% capacity retention after 90 cycles and stable cycling performance at 50 °C. This work provides a new design principle for electrolyte, which may expedite the development of ultra-wide-temperature lithium-ion batteries.

摘要

缓慢的离子传输和不断恶化的电极-电解质界面阻碍了锂离子电池在宽温度范围内的性能,从而在提高高压和高倍率性能方面带来了巨大挑战。在此,竞争性的离子-分子配位相互作用(锂-阴离子-溶剂-稀释剂)实现了一种平衡,引导形成以阴离子为主且与稀释剂适度相互作用的溶剂化结构,从而得到一种优异的宽温度电解质,其电化学稳定性高达5.4 V,锂离子电导率高(在-60°C时为1.034 mS/cm)。相应的NCM811||Li电池在-40°C下200次循环后容量保持率为90.74%,在70°C下250次循环后为54.68%。此外,该电池在25°C下以10 C的高倍率实现了稳定的循环性能。值得注意的是,组装的NCM811||石墨软包电池(3 Ah)可在-106°C下运行,在-30°C下拥有2.6 Ah的容量,90次循环后容量保持率为90.28%,在50°C下具有稳定的循环性能。这项工作为电解质提供了一种新的设计原则,可能会加速超宽温度锂离子电池的发展。

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