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Probing a battery electrolyte drop with ambient pressure photoelectron spectroscopy

机译:用环境压力光电子谱探测电池电解质液滴

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Operando ambient pressure photoelectron spectroscopy in realistic battery environments is a key development towards probing the functionality of the electrode/electrolyte interface in lithium-ion batteries that is not possible with conventional photoelectron spectroscopy. Here, we present the ambient pressure photoelectron spectroscopy characterization of a model electrolyte based on 1M bis(trifluoromethane)sulfonimide lithium salt in propylene carbonate. For the first time, we show ambient pressure photoelectron spectroscopy data of propylene carbonate in the liquid phase by using solvent vapor as the stabilizing environment. This enables us to separate effects from salt and solvent, and to characterize changes in electrolyte composition as a function of probing depth. While the bulk electrolyte meets the expected composition, clear accumulation of ionic species is found at the electrolyte surface. Our results show that it is possible to measure directly complex liquids such as battery electrolytes, which is an important accomplishment towards true operando studies.
机译:Realando环境压力光电子能谱在现实的电池环境中是探测锂离子电池中的电极/电解质界面功能的关键开发,所述锂离子电池中不可能具有传统光电子光谱的锂离子电池。这里,我们介绍了基于1M双(三氟甲烷)磺酰亚胺锂盐在碳酸亚丙酯中的模型电解质的环境压力光电子光谱表征。首次,通过使用溶剂蒸汽作为稳定环境,显示液相中丙烯碳酸亚丙酯的环境压力光电子谱数据。这使我们能够分离盐和溶剂的影响,并表征电解质组合物的变化作为探测深度的函数。虽然散装电解质满足预期的组合物,但在电解质表面发现离子物质的清晰积累。我们的结果表明,可以直接测量诸如电池电解质等复杂液体,这是对真正的操作组合研究的重要成就。

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