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Operando observations of solid-state electrochemical reactions in Li-ion batteries by spatially resolved TEM EELS and electron holography

机译:通过空间分辨的TEM鳗鱼和电子全息术观察锂离子电池固态电化学反应的操作

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摘要

All-solid-state Li-ion batteries having incombustible solid electrolytes are promising energy storage devices because they have significant advantages in terms of safety, lifetime and energy density. Electrochemical reactions, namely, Li-ion insertion/extraction reactions, commonly occur around the nanometer-scale interfaces between the electrodes and solid electrolytes. Thus, transmission electron microscopy (TEM) is an appropriate technique to directly observe such reactions, providing important information for understanding the fundamental solid-state electrochemistry and improving battery performance. In this review, we introduce two types of TEM techniques for operando observations of battery reactions, spatially resolved electron energy-loss spectroscopy in a TEM mode for direct detection of the Li concentration profiles and electron holography for observing the electric potential changes due to Li-ion insertion/extraction reactions. We visually show how Li-ion insertion/extractions affect the crystal structures, electronic structures, and local electric potential during the charge-discharge processes in these batteries.
机译:具有不可燃固体电解质的全固态锂离子电池是有前途的能量存储装置,因为它们在安全性,寿命和能量密度方面具有显着的优势。电化学反应,即锂离子插入/提取反应,通常发生在电极和固体电解质之间的纳米级界面周围。因此,透射电子显微镜(TEM)是一种直接观察这种反应的适当技术,提供了理解基本固态电化学和提高电池性能的重要信息。在该综述中,我们介绍了两种类型的TEM技术,用于对电池反应的手术机观察,空间上解析的电子能损光谱,用于直接检测LI浓度分布和电子全息术,用于观察由于LI-引起的电势变化离子插入/提取反应。我们在目视展示锂离子插入/提取如何影响这些电池的充电 - 放电过程中的晶体结构,电子结构和局部电位。

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