The application of in situ liquid cell TEM in advanced battery research

Yi Yuan, S. Pu, Xiangwen Gao, A. Robertson
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引用次数: 1

Abstract

The fast development of modern battery research highly relies on advanced characterisation methods to unveil the fundamental mechanisms of their electrochemical processes. The continued development of in situ characterisation techniques allows the study of dynamic changes during battery cycling rather than just the initial and the final phase. Among these, in situ transmission electron microscopy (TEM) is able to provide direct observation of the structural and morphological evolution in batteries at the nanoscale. Using a compact liquid cell configuration, which allows a fluid to be safely imaged in the high vacuum of the TEM, permits the study of a wide range of candidate liquid electrolytes. In this review, the experimental setup is outlined and the important points for reliable operation are summarised, which are critical to the safety and reproducibility of experiments. Furthermore, the application of in situ liquid cell TEM in understanding various aspects, including dendrite growth, the solid electrolyte interface (SEI) formation, and the electrode structural evolution in different battery systems, is systematically presented. Finally, challenges in the current application and perspectives of the future development of the in situ liquid cell TEM technique are briefly addressed.
原位液体电池透射电镜在先进电池研究中的应用
现代电池研究的快速发展在很大程度上依赖于先进的表征方法来揭示其电化学过程的基本机制。原位表征技术的持续发展允许研究电池循环过程中的动态变化,而不仅仅是初始和最终阶段。其中,原位透射电子显微镜(TEM)能够在纳米尺度上直接观察电池的结构和形态演变。使用紧凑的液体电池结构,可以在TEM的高真空中安全地对流体进行成像,从而可以研究广泛的候选液体电解质。本文概述了实验设置,并总结了可靠操作的要点,这些要点对实验的安全性和可重复性至关重要。此外,系统地介绍了原位液体电池透射电镜在不同电池系统中枝晶生长、固体电解质界面(SEI)形成和电极结构演变等方面的应用。最后简要介绍了原位液体电池透射电镜技术目前应用中存在的挑战和未来发展的展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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