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一种用于高压锂离子电池的设计耐用电解质及其机理分析

A Designed Durable Electrolyte for High-Voltage Lithium-Ion Batteries and Mechanism Analysis.

作者信息

Zou Yeguo, Shen Yabin, Wu Yingqiang, Xue Hongjin, Guo Yingjun, Liu Gang, Wang Limin, Ming Jun

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, P.R. China.

University of Science and Technology of China, Hefei, 230026, P.R. China.

出版信息

Chemistry. 2020 Jun 23;26(35):7930-7936. doi: 10.1002/chem.202001038. Epub 2020 May 29.

Abstract

Rechargeable lithium-ion batteries (LIBs) dominate the energy market, from electronic devices to electric vehicles, but pursuing greater energy density remains challenging owing to the limited electrode capacity. Although increasing the cut-off voltage of LIBs (>4.4 V vs. Li/Li ) can enhance the energy density, the aggravated electrolyte decomposition always leads to a severe capacity fading and/or expiry of the battery. Herein, a new durable electrolyte is reported for high-voltage LIBs. The designed electrolyte is composed of mixed linear alkyl carbonate solvent with certain cyclic carbonate additives, in which use of the ethylene carbonate (EC) co-solvent was successfully avoided to suppress the electrolyte decomposition. As a result, an extremely high cycling stability, rate capability, and high-temperature storage performance were demonstrated in the case of a graphite|LiNi Co Mn O (NCM622) battery at 4.45 V when this electrolyte was used. The good compatibility of the electrolyte with the graphite anode and the mitigated structural degradation of the NCM622 cathode are responsible for the high performance at high potentials above 4.4 V. This work presents a promising application of high-voltage electrolytes for pursuing high energy LIBs and provides a straightforward guide to study the electrodes/electrolyte interface for higher stability.

摘要

从电子设备到电动汽车,可充电锂离子电池(LIBs)主导着能源市场,但由于电极容量有限,追求更高的能量密度仍然具有挑战性。尽管提高锂离子电池的截止电压(相对于Li/Li >4.4 V)可以提高能量密度,但电解质分解加剧总是会导致严重的容量衰减和/或电池失效。在此,报道了一种用于高压锂离子电池的新型耐用电解质。所设计的电解质由混合线性碳酸酯溶剂与特定的环状碳酸酯添加剂组成,其中成功避免了使用碳酸乙烯酯(EC)共溶剂以抑制电解质分解。结果,当使用这种电解质时,在石墨|LiNiCoMnO(NCM622)电池在4.45 V的情况下展示出极高的循环稳定性、倍率性能和高温存储性能。电解质与石墨负极的良好兼容性以及NCM622正极结构退化的减轻是在高于4.4 V的高电位下实现高性能的原因。这项工作展示了高压电解质在追求高能量锂离子电池方面的有前景的应用,并为研究电极/电解质界面以实现更高稳定性提供了直接的指导。

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