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通过添加1,1'-草酰二咪唑(ODI)构建稳定的界面以提高LiNiCoMnO/石墨电池的温度和倍率性能

Constructing a Robust Interphase with 1,1'-Oxalyldiimidazole (ODI) Additive to Enhance the Temperature and Rate Performance of LiNiCoMnO/Graphite Batteries.

作者信息

He Xin, Zeng Xueyi, Gao Xiang, Li Shufeng, Zhao Xiaoyang, Wang Wenlian, Fan Weizhen, Ma Zhen, Nan Junmin

机构信息

School of Chemistry, South China Normal University, Guangzhou 510006, P. R. China.

School of Geomatic and Environmental Engineering, Henan Polytechnic Institute, Nanyang 473000, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2025 Jan 15;17(2):3467-3477. doi: 10.1021/acsami.4c19804. Epub 2024 Dec 31.

Abstract

This work develops 1,1'-oxalyldiimidazole (ODI) as a functional electrolyte additive. This film-forming additive improves the wide range of temperature and rate performances of LiNiCoMnO/graphite (NCM811) batteries. After 1200 cycles at room temperature (25 °C), the discharge capacity retention rate is 51.95% for the battery with a blank electrolyte, and it is 93.18% for that with an ODI-containing electrolyte. With 0.1% ODI, the discharge capacity retention increases from 0 to 75.89% after 500 cycles at 45 °C and increases from 48.51 to 95.54% after 300 cycles at -10 °C. In addition, the rate performance is also enhanced by the introduction of 0.1% ODI. With spectroscopic characterization, the improvement of battery electrochemical performance by ODI is supported. It is demonstrated that ODI tends to preferentially decompose on the electrodes and then participates in the construction of a stable interfacial film with low impedance, resulting in the improvement of battery performance. Not only does this work develop an imidazole-based electrolyte, but it also inspires innovative approaches to creating functional additives that can enhance battery performance.

摘要

本研究开发了1,1'-草酰二咪唑(ODI)作为一种功能性电解质添加剂。这种成膜添加剂改善了LiNiCoMnO/石墨(NCM811)电池在宽温度范围和倍率下的性能。在室温(25°C)下进行1200次循环后,使用空白电解质的电池放电容量保持率为51.95%,而使用含ODI电解质的电池放电容量保持率为93.18%。添加0.1%的ODI后,在45°C下进行500次循环后,放电容量保持率从0增加到75.89%,在-10°C下进行300次循环后,放电容量保持率从48.51%增加到95.54%。此外,引入0.1%的ODI也提高了倍率性能。通过光谱表征,证实了ODI对电池电化学性能的改善作用。结果表明,ODI倾向于优先在电极上分解,然后参与构建具有低阻抗的稳定界面膜,从而提高电池性能。这项工作不仅开发了一种基于咪唑的电解质,还启发了创造能够增强电池性能的功能性添加剂的创新方法。

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