BMW Group Technology Office USA , Mountain View, California 94043, United States.
Research Battery Technology, BMW Group , Munich 80788, Germany.
Chem Rev. 2016 Jan 13;116(1):140-62. doi: 10.1021/acs.chemrev.5b00563. Epub 2015 Dec 29.
This Review is focused on ion-transport mechanisms and fundamental properties of solid-state electrolytes to be used in electrochemical energy-storage systems. Properties of the migrating species significantly affecting diffusion, including the valency and ionic radius, are discussed. The natures of the ligand and metal composing the skeleton of the host framework are analyzed and shown to have large impacts on the performance of solid-state electrolytes. A comprehensive identification of the candidate migrating species and structures is carried out. Not only the bulk properties of the conductors are explored, but the concept of tuning the conductivity through interfacial effects-specifically controlling grain boundaries and strain at the interfaces-is introduced. High-frequency dielectric constants and frequencies of low-energy optical phonons are shown as examples of properties that correlate with activation energy across many classes of ionic conductors. Experimental studies and theoretical results are discussed in parallel to give a pathway for further improvement of solid-state electrolytes. Through this discussion, the present Review aims to provide insight into the physical parameters affecting the diffusion process, to allow for more efficient and target-oriented research on improving solid-state ion conductors.
这篇综述专注于用于电化学储能系统的固态电解质的离子输运机制和基本特性。讨论了显著影响扩散的迁移物种的性质,包括价态和离子半径。组成骨架的配体和金属的性质进行了分析,并显示对固态电解质的性能有很大影响。对候选迁移物种和结构进行了全面的鉴定。不仅探索了导体的体性质,而且还提出了通过界面效应(特别是控制晶界和界面处的应变)来调节电导率的概念。高频介电常数和低能光学声子的频率就是与许多类离子导体的激活能相关的性质的例子。实验研究和理论结果被并行讨论,为进一步改善固态电解质提供了途径。通过这一讨论,本综述旨在深入了解影响扩散过程的物理参数,以便更有效地进行有针对性的固态离子导体研究。