论文标题

使用原位光谱法观察锂金属的表面层

Observation of the Surface Layer of Lithium Metal using In Situ Spectroscopy

论文作者

Seo, Ambrose, Meyer, Andrew, Shrestha, Sujan, Wang, Ming, Xiao, Xingcheng, Cheng, Yang-Tse

论文摘要

我们已经使用X射线光发射光谱和光谱椭圆法研究了锂金属的表面。即使我们通过化学清洁和手套箱内的机械抛光来严格准备锂金属的表面,两种光谱研究都表明,存在几十个纳米厚的表面层,由氧化锂和碳酸盐组成。当锂金属暴露于房间空气(〜50%的水分)时,原位实时监测光谱表明表面层以大约24 nm/min的速度生长,大概是由接口控制的过程驱动的。我们的结果暗示,通过简单的清洁/抛光方法可以实现无表面锂的锂金属,这表明锂金属电极与固态电池中锂金属电池中的初始接口可能与理想的锂/电解质接触可能有所不同。

We have investigated the surface of lithium metal using x-ray photoemission spectroscopy and optical spectroscopic ellipsometry. Even if we prepare the surface of lithium metal rigorously by chemical cleaning and mechanical polishing inside a glovebox, both spectroscopic investigations show the existence of a few tens of nanometer-thick surface layers, consisting of lithium oxides and lithium carbonates. When lithium metal is exposed to room air (~50% moisture), in situ real-time monitoring of optical spectra indicates that the surface layer grows at a rate of approximately 24 nm/min, presumably driven by an interface-controlled process. Our results hint that surface-layer-free lithium metals are formidable to achieve by a simple cleaning/polishing method, suggesting that the initial interface between lithium metal electrodes and solid-state electrolytes in fabricated lithium metal batteries can differ from an ideal lithium/electrolyte contact.

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