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Probing Lithium-Ion Battery Electrolytes with Laboratory Near-Ambient Pressure XPS

机译:探测锂离子电池电解液与实验室近环境压力XPS

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摘要

In this article, we present Near Ambient Pressure (NAP)-X-ray Photoelectron Spectroscopy (XPS) results from model and commercial liquid electrolytes for lithium-ion battery production using an automated laboratory NAP-XPS system. The electrolyte solutions were (i) LiPF6 in EC/DMC (LP30) as a typical commercial battery electrolyte and (ii) LiTFSI in PC as a model electrolyte. We analyzed the LP30 electrolyte solution, first in its vapor and liquid phase to compare individual core-level spectra. In a second step, we immersed a V2O5 crystal as a model cathode material in this LiPF6 solution. Additionally, the LiTFSI electrolyte model system was studied to compare and verify our findings with previous NAP-XPS data. Photoelectron spectra recorded at pressures of 2–10 mbar show significant chemical differences for the different lithium-based electrolytes. We show the enormous potential of laboratory NAP-XPS instruments for investigations of solid-liquid interfaces in electrochemical energy storage systems at elevated pressures and illustrate the simplicity and ease of the used experimental setup (EnviroESCA).
机译:在本文中,我们使用自动化实验室NAP-XPS系统呈现出近环境压力(NAP)-X射线光电子能谱(XPS)的锂离子电池生产的结果。电解质溶液在EC / DMC(LP30)中的LIPF6为典型的商用电池电解质和(II)作为电解质的PC中的LITFSI。我们分析了LP30电解质溶液,首先在其蒸汽和液相中进行比较各个核心级光谱。在第二步中,在该LiPF6溶液中浸入V2O5晶体作为模型阴极材料。此外,研究了LITFSI电解质模型系统以使用以前的NAP-XPS数据进行比较和验证我们的调查结果。记录在2-10毫巴的压力下的光电子光谱显示出不同锂基电解质的显着化学差异。我们展示了实验室NAP-XPS仪器的巨大潜力,用于在升高的压力下对电化学能量存储系统中的固体界面进行研究,并说明使用的实验装置(Enviroesca)的简单性和易于轻松。

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