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Comprehensive Review of Polymer Architecture for All-Solid-State Lithium Rechargeable Batteries

机译:全固态锂可充电电池聚合物体系结构的全面综述

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摘要

Solid-state batteries are an emerging option for next-generation traction batteries because they are safe and have a high energy density. Accordingly, in polymer research, one of the main goals is to achieve solid polymer electrolytes (SPEs) that could be facilely fabricated into any preferred size of thin films with high ionic conductivity as well as favorable mechanical properties. In particular, in the past two decades, many polymer materials of various structures have been applied to improve the performance of SPEs. In this review, the influences of polymer architecture on the physical and electrochemical properties of an SPE in lithium solid polymer batteries are systematically summarized. The discussion mainly focuses on four principal categories: linear, comb-like, hyper-branched, and crosslinked polymers, which have been widely reported in recent investigations as capable of optimizing the balance between mechanical resistance, ionic conductivity, and electrochemical stability. This paper presents new insights into the design and exploration of novel high-performance SPEs for lithium solid polymer batteries.
机译:固态电池是下一代牵引电池的新兴选择,因为它们安全且具有高能量密度。因此,在聚合物研究中,主要目标之一是获得可以容易地制造成具有高离子电导率以及有利的机械性能的任何优选尺寸的薄膜的固体聚合物电解质(SPE)。特别地,在过去的二十年中,已经使用了许多具有各种结构的聚合物材料来改善SPE的性能。在这篇综述中,系统地总结了聚合物结构对锂固体聚合物电池中SPE的物理和电化学性质的影响。讨论主要集中于四个主要类别:线性,梳状,超支化和交联聚合物,在最近的研究中已广泛报道它们能够优化机械电阻,离子电导率和电化学稳定性之间的平衡。本文提供了对用于锂固体聚合物电池的新型高性能SPE的设计和探索的新见解。

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