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用于高能金属基电池的功能性聚合物隔膜的设计原理

Design Principles of Functional Polymer Separators for High-Energy, Metal-Based Batteries.

作者信息

Zhang Weidong, Tu Zhengyuan, Qian Jiawei, Choudhury Snehashis, Archer Lynden A, Lu Yingying

机构信息

College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, 310027, China.

Department of Materials Science and Engineering, Cornell University, Ithaca, NY, 14853, USA.

出版信息

Small. 2018 Mar;14(11):e1703001. doi: 10.1002/smll.201703001. Epub 2017 Dec 27.

Abstract

Next-generation rechargeable batteries that offer high energy density, efficiency, and reversibility rely on cell configurations that enable synergistic operations of individual components. They must also address multiple emerging challenges,which include electrochemical stability, transport efficiency, safety, and active material loss. The perspective of this Review is that rational design of the polymeric separator, which is used widely in rechargeable batteries, provides a rich set of opportunities for new innovations that should enable batteries to meet many of these needs. This perspective is different from the conventional view of the polymer separator as an inert/passive unit in a battery, which has the sole function to prevent direct contact between electrically conductivecomponents that form the battery anode and cathode. Polymer separators, which serve as the core component in a battery, bridge the electrodes and the electrolyte with a large surface contact that can be utilized to apply desirable functions. This Review focuses specifically on recent advances in polymer separator systems, with a detailed analysis of several embedded functional agents that are incorporated to improve mechanical robustness, regulate ion and mass transport, and retard flammability. The discussion is also extended to new composite separator concepts that are designated traditionally as polymer/gel electrolytes.

摘要

下一代可充电电池要具备高能量密度、效率和可逆性,依赖于能使各个组件协同运作的电池配置。它们还必须应对多个新出现的挑战,其中包括电化学稳定性、传输效率、安全性和活性材料损失。本综述的观点是,对可充电电池中广泛使用的聚合物隔膜进行合理设计,为新的创新提供了丰富的机会,这些创新应能使电池满足许多此类需求。这种观点不同于将聚合物隔膜视为电池中惰性/被动单元的传统观点,传统观点认为其唯一功能是防止构成电池阳极和阴极的导电组件直接接触。作为电池核心组件的聚合物隔膜,通过大面积的表面接触连接电极和电解质,可利用这种接触施加理想的功能。本综述特别关注聚合物隔膜系统的最新进展,并详细分析了几种为提高机械强度、调节离子和物质传输以及延缓可燃性而加入的嵌入式功能剂。讨论还扩展到了传统上被称为聚合物/凝胶电解质的新型复合隔膜概念。

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