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Transient Behavior of the Metal Interface in Lithium Metal-Garnet Batteries

机译:金属界面在锂金属石榴石电池中的瞬态行为

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摘要

The interface between solid electrolytes and Li metal is a primary issue for solid-state batteries. Introducing a metal interlayer to conformally coat solid electrolytes can improve the interface wettability of Li metal and reduce the interfacial resistance, but the mechanism of the metal interlayer is unknown. In this work, we used magnesium (Mg) as a model to investigate the effect of a metal coating on the interfacial resistance of a solid electrolyte and Li metal anode. The Li-Mg alloy has low overpotential, leading to a lower interfacial resistance. Our motivation is to understand how the metal interlayer behaves at the interface to promote increased Limetal wettability of the solid electrolyte surface and reduce interfacial resistance. Surprisingly, we found that the metal coating dissolved in the molten piece of Li and diffused into the bulk Li metal, leading to a small and stable interfacial resistance between the garnet solid electrolyte and the Li metal. We also found that the interfacial resistance did not change with increase in the thickness of the metal coating (5, 10, and 100 nm), due to the transient behavior of the metal interface layer.
机译:固体电解质和Li金属之间的界面是固态电池的主要问题。引入金属夹层以共形涂层固体电解质可以改善Li金属的界面润湿性,降低界面抗性,但金属中间层的机理未知。在这项工作中,我们使用镁(Mg)作为模型,以研究金属涂层对固体电解质和Li金属阳极的界面抗性的影响。 Li-Mg合金具有低的过电位,导致近界面耐受较低。我们的动机是了解金属层间在界面上的表现方式,以促进固体电解质表面的速度润湿性增加并降低界面抗性。令人惊讶的是,我们发现将金属涂层溶解在熔融的Li块中并扩散到散装Li金属中,导致石榴石固体电解质和Li金属之间的小且稳定的界面抗性。我们还发现,由于金属界面层的瞬态行为,界面抗性不会随金属涂层(5,10和100nm)的厚度的增加而改变。

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