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用于锂金属电池的聚醚基聚氨酯电解质:综述

Polyether-based polyurethane electrolyte for lithium metal battery: a perspective.

作者信息

Cui Peng, Li Yifan, Liu YuXing, Wang Siqi, Tang Xingyu, Ye Yihong, Su Hance, Sun Chun

机构信息

School of Mathematical and Physical Sciences, Nanjing Tech University China

School of Engineering Auditing, Nanjing Audit University China

出版信息

RSC Adv. 2024 Nov 11;14(49):36152-36160. doi: 10.1039/d4ra06863g.

Abstract

Polyurethane (PU)-based electrolyte has become one of the most important research directions because of its unique repeating 'soft-hard' segment co-polymer structure. Its 'soft segment' composition includes polyethylene oxide, polysiloxane, polycarbonate, cellulose and polyether. Among them, polyether-based polyurethane electrolytes (PPES) have the advantages of simple synthesis, molecular structure optimization and functional group modification, which can greatly improve the ionic conductivity of the system and form a good ion transport interface. To date, a few separate and detailed reviews of advances in PPES have been reported. In this paper, the research progress of PPES is reviewed from the aspects of structural design strategy, molecular synthesis, conductivity modification methods, specific functions and interfacial ion transport behavior in lithium metal batteries (LMBs). In addition, the synthetic route of PPES and the development prospect of PPES are discussed. We also provide guidance for developing high-performance PPES for next-generation LMBs.

摘要

基于聚氨酯(PU)的电解质因其独特的重复“软-硬”链段共聚物结构而成为最重要的研究方向之一。其“软段”组成包括聚环氧乙烷、聚硅氧烷、聚碳酸酯、纤维素和聚醚。其中,基于聚醚的聚氨酯电解质(PPES)具有合成简单、分子结构优化和官能团改性等优点,可大大提高体系的离子电导率并形成良好的离子传输界面。迄今为止,已有一些关于PPES进展的单独且详细的综述报道。本文从锂金属电池(LMBs)的结构设计策略、分子合成、电导率改性方法、特定功能及界面离子传输行为等方面对PPES的研究进展进行了综述。此外,还讨论了PPES的合成路线及发展前景。我们也为开发用于下一代LMBs的高性能PPES提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/059b/11552083/f4499d8c107d/d4ra06863g-f1.jpg

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