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通过紫外线交联制备用于高性能锂金属电池的金属有机框架(MOF)衍生凝胶电解质

Metal-Organic Frameworks (MOF)-Derived Gel Electrolyte via UV Cross-Linking for High-Performance Lithium Metal Batteries.

作者信息

Mao Naiyao, Lan Lingxiao, Hun Qiankun, Wei Jianghua, Liang Xinghua, Guo Yifeng

机构信息

Guangxi Key Laboratory of Automobile Components and Vehicle Technology, Guangxi University of Science & Technology, Liuzhou 545006, China.

School of Mechanical Engineering, Chengdu University, Chengdu 610106, China.

出版信息

Gels. 2025 May 29;11(6):409. doi: 10.3390/gels11060409.

Abstract

Gel electrolytes (GEs) play a pivotal role in the advancement of lithium metal batteries by offering high energy density and enhanced rate capability. Nevertheless, their real-world application is hampered by relatively low ionic conductivity and significant interfacial resistance at room temperatures. In this work, we developed a gel electrolyte membrane (GEM) by embedding Zeolitic Imidazolate Framework-8 (ZIF-8) metal-organic frameworks (MOFs) material into a poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) matrix through UV curing. The composite membrane, with 4 wt% ZIF-8, exhibited an ionic conductivity of 1.17 × 10 S/cm, an electrochemical stability window of 4.7 V, and a lithium-ion transference number of 0.7. The test results indicate that the electrochemical performance of LFP//GEM//Li battery has an initial specific capacity of 168 mAh g at 0.1 C rate. At 1 C, the discharge capacity was 88 mAh g, and at 2 C, it was 68 mAh g. Enhanced ionic transport, improved electrochemical stability, and optimized lithium-ion migration collectively contributed to superior rate performance and prolonged cycle life. This study offers novel insights and methodological advances for next-generation lithium metal batteries technologies.

摘要

凝胶电解质(GEs)通过提供高能量密度和增强的倍率性能,在锂金属电池的发展中发挥着关键作用。然而,它们在室温下的实际应用受到相对较低的离子电导率和显著的界面电阻的阻碍。在这项工作中,我们通过紫外线固化将沸石咪唑酯骨架-8(ZIF-8)金属有机骨架(MOFs)材料嵌入聚(偏二氟乙烯-共-六氟丙烯)(PVDF-HFP)基体中,开发了一种凝胶电解质膜(GEM)。含有4 wt% ZIF-8的复合膜表现出1.17×10 S/cm的离子电导率、4.7 V的电化学稳定窗口和0.7的锂离子迁移数。测试结果表明,LFP//GEM//Li电池的电化学性能在0.1 C倍率下的初始比容量为168 mAh g。在1 C时,放电容量为88 mAh g,在2 C时,为68 mAh g。增强的离子传输、改善的电化学稳定性和优化的锂离子迁移共同促成了优异的倍率性能和延长的循环寿命。这项研究为下一代锂金属电池技术提供了新的见解和方法进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d7/12192033/447783ad1b4a/gels-11-00409-g001.jpg

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