The Effects of Electric Field Distribution on the Interface Stability in Solid Electrolytes

电场 电解质 材料科学 电极 阳极 电流密度 分析化学(期刊) 光电子学 化学 物理 物理化学 量子力学 色谱法
作者
Romit Roy Choudhury,Michael J. Wang,Jeff Sakamoto
出处
期刊:Journal of The Electrochemical Society [Institute of Physics]
卷期号:167 (14): 140501-140501 被引量:17
标识
DOI:10.1149/1945-7111/abc034
摘要

Ceramic electrolytes could potentially enable Li metal anodes, leading to safer and more energy dense solid-state batteries. However, it has been hypothesized that electric field amplification at electrode edges can destabilize the interface and lead to short circuiting during charging. By comparing models of the electric field distribution at the electrode/electrolyte interface for varying electrode geometries with experimental solid-electrolyte systems, we show that areas of high electric field can localize at sharp corners, which may facilitate Li metal penetration at these locations. Symmetric Li/ Li 6.5 La 3 Zr 1.5 Ta 0.5 O 12 (LLZO) cells were cycled until failure and the spatial distribution of the degradation was analyzed using electron microscopy. We report a decrease in nominal critical current density (CCD) from 1.48 to 1.26 mA cm −2 due to a 15% increase in electric field from edge effects. Moreover, when considering the CCD locally at spots of high electric field amplification, we find current densities of at least 4 mA cm −2 can still be sustained. Non-uniform electric field distributions at the Li/LLZO interface could play a major role in determining cycling capabilities and failure modes of solid-state batteries and may also have important implications for the manufacturing of Li metal battery electrodes.
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