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固态离子导体和锂电池中的空间电荷层效应:原理与展望

Space Charge Layer Effect in Solid State Ion Conductors and Lithium Batteries: Principle and Perspective.

作者信息

Chen Cheng, Guo Xiangxin

出版信息

Acta Chim Slov. 2016;63(3):489-95. doi: 10.17344/acsi.2016.2286.

Abstract

The space charge layer (SCL) effects were initially developed to explain the anomalous conductivity enhancement in composite ionic conductors. They were further extended to qualitatively as well as quantitatively understand the interfacial phenomena in many other ionic-conducting systems. Especially in nanometre-scale systems, the SCL effects could be used to manipulate the conductivity and construct artificial conductors. Recently, existence of such effects either at the electrolyte/cathode interface or at the interfaces inside the composite electrode in all solid state lithium batteries (ASSLB) has attracted attention. Therefore, in this article, the principle of SCL on basis of defect chemistry is first presented. The SCL effects on the carrier transport and storage in typical conducting systems are reviewed. For ASSLB, the relevant effects reported so far are also reviewed. Finally, the perspective of interface engineer related to SCL in ASSLB is addressed.

摘要

空间电荷层(SCL)效应最初是为了解释复合离子导体中异常的电导率增强而提出的。它们后来被进一步扩展,用于定性和定量地理解许多其他离子传导系统中的界面现象。特别是在纳米尺度系统中,SCL效应可用于调控电导率并构建人工导体。最近,在全固态锂电池(ASSLB)的电解质/阴极界面或复合电极内部的界面处存在这种效应已引起关注。因此,在本文中,首先介绍基于缺陷化学的SCL原理。回顾了SCL对典型传导系统中载流子传输和存储的影响。对于ASSLB,也回顾了迄今为止报道的相关效应。最后,探讨了与ASSLB中SCL相关的界面工程前景。

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