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原位电化学透射电子显微镜直接观察锂离子电池中固体电解质相界面的形成。

Direct visualization of solid electrolyte interphase formation in lithium-ion batteries with in situ electrochemical transmission electron microscopy.

机构信息

1Oak Ridge National Laboratory,Center for Nanophase Materials Sciences,Oak Ridge,TN 37831,USA.

2Oak Ridge National Laboratory,Chemical Sciences Division,Oak Ridge,TN 37831,USA.

出版信息

Microsc Microanal. 2014 Aug;20(4):1029-37. doi: 10.1017/S1431927614012744. Epub 2014 Jul 4.

Abstract

Complex, electrochemically driven transport processes form the basis of electrochemical energy storage devices. The direct imaging of electrochemical processes at high spatial resolution and within their native liquid electrolyte would significantly enhance our understanding of device functionality, but has remained elusive. In this work we use a recently developed liquid cell for in situ electrochemical transmission electron microscopy to obtain insight into the electrolyte decomposition mechanisms and kinetics in lithium-ion (Li-ion) batteries by characterizing the dynamics of solid electrolyte interphase (SEI) formation and evolution. Here we are able to visualize the detailed structure of the SEI that forms locally at the electrode/electrolyte interface during lithium intercalation into natural graphite from an organic Li-ion battery electrolyte. We quantify the SEI growth kinetics and observe the dynamic self-healing nature of the SEI with changes in cell potential.

摘要

复杂的电化学驱动传输过程是电化学储能器件的基础。在其原始的液态电解质中以高空间分辨率直接观察电化学过程,将极大地增进我们对器件功能的理解,但这一直难以实现。在这项工作中,我们使用了一种新开发的用于原位电化学透射电子显微镜的液态电池,通过对固体电解质界面(SEI)形成和演变的动力学进行表征,深入了解锂离子(Li-ion)电池中的电解质分解机制和动力学。在这里,我们能够从有机锂离子电池电解液中可视化嵌入石墨时,在电极/电解质界面局部形成的 SEI 的详细结构。我们量化了 SEI 的生长动力学,并观察到随着电池电势的变化,SEI 的动态自修复特性。

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