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一种基于金属有机框架的用于可充电锂金属电池的柔性且坚固的三维混合凝胶固态电解质。

A Flexible Yet Robust 3D-Hybrid Gel Solid-State Electrolyte Based on Metal-Organic Frameworks for Rechargeable Lithium Metal Batteries.

作者信息

Liu Ruliang, Xue Jiaqi, Xie Lijun, Chen Huirong, Deng Zhaoxia, Yin Wei

机构信息

School of Chemistry and Materials Science, Guangdong University of Education, Guangzhou 510303, China.

出版信息

Gels. 2024 Dec 10;10(12):812. doi: 10.3390/gels10120812.

Abstract

Compared to traditional liquid electrolytes, solid electrolytes have received widespread attention due to their higher safety. In this work, a vinyl functionalized metal-organic framework porous material (MIL-101(Cr)-NH-Met, noted as MCN-M) is synthesized by postsynthetic modification. A novel three-dimensional hybrid gel composite solid electrolyte (GCSE-P/MCN-M) is successfully prepared via in situ gel reaction of a mixture containing multifunctional hybrid crosslinker (MCN-M), lithium bis(trifluoromethanesulfonyl)imide (LiTFSI), ethylene carbonate (EC), diethylene glycol monomethyl ether methacrylate (EGM) and polyethylene (vinylidene fluoridee) (PVDF). Benefiting from the excellent mechanical properties, rich pore structure, and numerous unsaturated metal sites of GCSE-P/MCN-M, our GCSE-P/MCN-M exhibits excellent mechanical modulus (953 MPa), good ionic conductivity (9.3 × 10 S cm) and wide electrochemical window (4.8 V). In addition, Li/LiFePO batteries based on GCSE-P/MCN-M have also demonstrated excellent cycling performance (a high-capacity retention of 87% after 200 cycles at 0.5 C). This work provides a promising approach for developing gel solid-state electrolytes with high ion conduction and excellent safety performance.

摘要

与传统液体电解质相比,固体电解质因其更高的安全性而受到广泛关注。在本工作中,通过后合成修饰合成了一种乙烯基官能化的金属有机框架多孔材料(MIL-101(Cr)-NH-Met,记为MCN-M)。通过包含多功能杂化交联剂(MCN-M)、双(三氟甲磺酰)亚胺锂(LiTFSI)、碳酸亚乙酯(EC)、二乙二醇单甲醚甲基丙烯酸酯(EGM)和聚(偏二氟乙烯)(PVDF)的混合物的原位凝胶反应,成功制备了一种新型三维杂化凝胶复合固体电解质(GCSE-P/MCN-M)。得益于GCSE-P/MCN-M优异的机械性能、丰富的孔结构和众多不饱和金属位点,我们的GCSE-P/MCN-M表现出优异的机械模量(953 MPa)、良好的离子电导率(9.3×10 S cm)和宽电化学窗口(4.8 V)。此外,基于GCSE-P/MCN-M的Li/LiFePO₄电池也表现出优异的循环性能(在0.5 C下200次循环后高容量保持率为87%)。这项工作为开发具有高离子传导率和优异安全性能的凝胶固态电解质提供了一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8609/11675897/dd9ac10490e3/gels-10-00812-g001.jpg

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