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A high pressure x-ray photoelectron spectroscopy experimental method for characterization of solid-liquid interfaces demonstrated with a Li-ion battery system

机译:用锂离子电池系统演示了用于表征固液界面的高压X射线光电子能谱实验方法

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摘要

We report a methodology for a direct investigation of the solid/liquid interface using high pressure x-ray photoelectron spectroscopy (HPXPS). The technique was demonstrated with an electrochemical system represented by a Li-ion battery using a silicon electrode and a liquid electrolyte of LiClO4 in propylene carbonate (PC) cycled versus metallic lithium. For the first time the presence of a liquid electrolyte was realized using a transfer procedure where the sample was introduced into a 2 mbar N-2 environment in the analysis chamber without an intermediate ultrahigh vacuum (UHV) step in the load lock. The procedure was characterized in detail concerning lateral drop gradients as well as stability of measurement conditions over time. The X-ray photoelectron spectroscopy (XPS) measurements demonstrate that the solid substrate and the liquid electrolyte can be observed simultaneously. The results show that the solid electrolyte interphase (SEI) composition for the wet electrode is stable within the probing time and generally agrees well with traditional UHV studies. Since the methodology can easily be adjusted to various high pressure photoelectron spectroscopy systems, extending the approach towards operando solid/liquid interface studies using liquid electrolytes seems now feasible. (C) 2015 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution 3.0 Unported License.
机译:我们报告了直接使用高压X射线光电子能谱(HPXPS)进行固/液界面研究的方法。该技术在以锂离子电池为代表的电化学系统中得到了证明,该锂离子电池使用硅电极和相对于金属锂循环的碳酸亚丙酯(PC)中的LiClO4液体电解质。首次使用转移程序实现了液体电解质的存在,其中将样品引入分析室中的2 mbar N-2环境中,而在负载锁定装置中没有中间的超高真空(UHV)步骤。该程序的详细特征涉及横向液滴梯度以及测量条件随时间的稳定性。 X射线光电子能谱(XPS)测量表明,可以同时观察到固体基质和液体电解质。结果表明,用于湿电极的固体电解质中间相(SEI)组成在探测时间内是稳定的,通常与传统的特高压研究非常吻合。由于该方法可以很容易地适应各种高压光电子能谱系统,因此将方法扩展到使用液体电解质进行固体/液体界面操作研究似乎是可行的。 (C)2015年作者。除另有说明外,所有文章内容均根据知识共享署名3.0未移植许可证进行许可。

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