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通过在位电化学(S)TEM 观察和量化锂电池中的纳米尺度过程。

Observation and quantification of nanoscale processes in lithium batteries by operando electrochemical (S)TEM.

机构信息

Joint Center for Energy Storage Research, Fundamental and Computational Science Directorate, Pacific Northwest National Laboratory , Richland, Washington 99352, United States.

出版信息

Nano Lett. 2015 Mar 11;15(3):2168-73. doi: 10.1021/acs.nanolett.5b00175. Epub 2015 Feb 25.

Abstract

An operando electrochemical stage for the transmission electron microscope has been configured to form a "Li battery" that is used to quantify the electrochemical processes that occur at the anode during charge/discharge cycling. Of particular importance for these observations is the identification of an image contrast reversal that originates from solid Li being less dense than the surrounding liquid electrolyte and electrode surface. This contrast allows Li to be identified from Li-containing compounds that make up the solid-electrolyte interphase (SEI) layer. By correlating images showing the sequence of Li electrodeposition and the evolution of the SEI layer with simultaneously acquired and calibrated cyclic voltammograms, electrodeposition, and electrolyte breakdown processes can be quantified directly on the nanoscale. This approach opens up intriguing new possibilities to rapidly visualize and test the electrochemical performance of a wide range of electrode/electrolyte combinations for next generation battery systems.

摘要

已经配置了用于透射电子显微镜的原位电化学台,以形成“锂电池”,用于量化在充电/放电循环期间阳极处发生的电化学过程。对于这些观察结果,特别重要的是识别出一种图像对比度反转,其起源于固体 Li 的密度小于周围的液态电解质和电极表面。这种对比度允许从构成固体电解质界面 (SEI) 层的含 Li 化合物中识别 Li。通过将显示 Li 电沉积顺序和 SEI 层演化的图像与同时获取和校准的循环伏安法、电沉积和电解质击穿过程相关联,可以直接在纳米尺度上量化这些过程。这种方法为快速可视化和测试下一代电池系统中各种电极/电解质组合的电化学性能开辟了有趣的新可能性。

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