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辐射对锂金属电池的影响。

Radiation effects on lithium metal batteries.

作者信息

Gao Yuliang, Qiao Fahong, Hou Weiping, Ma Li, Li Nan, Shen Chao, Jin Ting, Xie Keyu

机构信息

State Key Laboratory of Solidification Processing, Center for Nano Energy Materials, School of Materials Science and Engineering, Northwestern Polytechnical University and Shaanxi Joint Laboratory of Graphene (NPU), Xi'an 710072, China.

School of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, China.

出版信息

Innovation (Camb). 2023 Jun 24;4(4):100468. doi: 10.1016/j.xinn.2023.100468. eCollection 2023 Jul 10.

Abstract

The radiation tolerance of energy storage batteries is a crucial index for universe exploration or nuclear rescue work, but there is no thorough investigation of Li metal batteries. Here, we systematically explore the energy storage behavior of Li metal batteries under gamma rays. Degradation of the performance of Li metal batteries under gamma radiation is linked to the active materials of the cathode, electrolyte, binder, and electrode interface. Specifically, gamma radiation triggers cation mixing in the cathode active material, which results in poor polarization and capacity. Ionization of solvent molecules in the electrolyte promotes decomposition of LiPF along with its decomposition, and molecule chain breaking and cross-linking weaken the bonding ability of the binder, causing electrode cracking and reduced active material utilization. Additionally, deterioration of the electrode interface accelerates degradation of the Li metal anode and increases cell polarization, hastening the demise of Li metal batteries even more. This work provides significant theoretical and technical evidence for development of Li batteries in radiation environments.

摘要

储能电池的辐射耐受性是宇宙探索或核救援工作的关键指标,但对于锂金属电池尚无深入研究。在此,我们系统地探究了锂金属电池在伽马射线照射下的储能行为。伽马辐射下锂金属电池性能的退化与阴极活性材料、电解质、粘结剂和电极界面的活性物质有关。具体而言,伽马辐射引发阴极活性材料中的阳离子混合,导致极化和容量不佳。电解质中溶剂分子的电离促进了LiPF的分解及其自身分解,分子链断裂和交联削弱了粘结剂的粘结能力,导致电极开裂和活性材料利用率降低。此外,电极界面的恶化加速了锂金属负极的退化并增加了电池极化,进一步加速了锂金属电池的失效。这项工作为辐射环境下锂电池的发展提供了重要的理论和技术依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e50/10328994/de591ab20436/fx1.jpg

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