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用于固态锂电池的具有快速离子传输通道的柔性复合电解质膜

Flexible Composite Electrolyte Membranes with Fast Ion Transport Channels for Solid-State Lithium Batteries.

作者信息

Ma Xiaojun, Mao Dongxu, Xin Wenkai, Yang Shangyun, Zhang Hao, Zhang Yanzhu, Liu Xundao, Dong Dehua, Ye Zhengmao, Li Jiajie

机构信息

School of Materials Science and Engineering, University of Jinan, Jinan 250022, China.

Department of Chemical and Biological Engineering, Monash University, Clayton, VIC 3800, Australia.

出版信息

Polymers (Basel). 2024 Feb 20;16(5):565. doi: 10.3390/polym16050565.

Abstract

Numerous endeavors have been dedicated to the development of composite polymer electrolyte (CPE) membranes for all-solid-state batteries (SSBs). However, insufficient ionic conductivity and mechanical properties still pose great challenges in practical applications. In this study, a flexible composite electrolyte membrane (FCPE) with fast ion transport channels was prepared using a phase conversion process combined with in situ polymerization. The polyvinylidene fluoride-hexafluoro propylene (PVDF-HFP) polymer matrix incorporated with lithium lanthanum zirconate (LLZTO) formed a 3D net-like structure, and the in situ polymerized polyvinyl ethylene carbonate (PVEC) enhanced the interface connection. This 3D network, with multiple rapid pathways for Li that effectively control Li flux, led to uniform lithium deposition. Moreover, the symmetrical lithium cells that used FCPE exhibited high stability after 1200 h of cycling at 0.1 mA cm. Specifically, all-solid-state lithium batteries coupled with LiFePO cathodes can stably cycle for over 100 cycles at room temperature with high Coulombic efficiencies. Furthermore, after 100 cycles, the infrared spectrum shows that the structure of FCPE remains stable. This work demonstrates a novel insight for designing a flexible composite electrolyte for highly safe SSBs.

摘要

许多努力都致力于全固态电池(SSB)复合聚合物电解质(CPE)膜的开发。然而,离子电导率和机械性能不足在实际应用中仍然带来巨大挑战。在本研究中,通过相转化过程结合原位聚合制备了具有快速离子传输通道的柔性复合电解质膜(FCPE)。掺入锆酸锂镧(LLZTO)的聚偏氟乙烯 - 六氟丙烯(PVDF - HFP)聚合物基体形成了三维网状结构,原位聚合的聚亚乙烯基碳酸酯(PVEC)增强了界面连接。这种具有多个有效控制锂通量的锂快速传输通道的三维网络导致锂均匀沉积。此外,使用FCPE的对称锂电池在0.1 mA cm下循环1200小时后表现出高稳定性。具体而言,与磷酸铁锂正极耦合的全固态锂电池在室温下能够以高库仑效率稳定循环超过100次。此外,在100次循环后,红外光谱表明FCPE的结构保持稳定。这项工作为设计用于高安全性全固态电池的柔性复合电解质提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e99/10934709/ffb767844827/polymers-16-00565-g001.jpg

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