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液体平面射流的光电子能谱。

Photoelectron spectroscopy from a liquid flatjet.

机构信息

Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany.

Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences, Flemingovo nám. 2, 16610 Prague 6, Czech Republic.

出版信息

J Chem Phys. 2023 Jun 21;158(23). doi: 10.1063/5.0155182.

Abstract

We demonstrate liquid-jet photoelectron spectroscopy from a flatjet formed by the impingement of two micron-sized cylindrical jets of different aqueous solutions. Flatjets provide flexible experimental templates enabling unique liquid-phase experiments that would not be possible using single cylindrical liquid jets. One such possibility is to generate two co-flowing liquid-jet sheets with a common interface in vacuum, with each surface facing the vacuum being representative of one of the solutions, allowing face-sensitive detection by photoelectron spectroscopy. The impingement of two cylindrical jets also enables the application of different bias potentials to each jet with the principal possibility to generate a potential gradient between the two solution phases. This is shown for the case of a flatjet composed of a sodium iodide aqueous solution and neat liquid water. The implications of asymmetric biasing for flatjet photoelectron spectroscopy are discussed. The first photoemission spectra for a sandwich-type flatjet comprised of a water layer encapsulated by two outer layers of an organic solvent (toluene) are also shown.

摘要

我们展示了由两股不同水溶液的微米级圆柱形射流冲击形成的平面射流的液体射流光电子能谱。平面射流提供了灵活的实验模板,能够实现独特的液相实验,而这在使用单根圆柱形液体射流时是不可能的。其中一种可能性是在真空中产生两个共流的液体射流片,它们具有共同的界面,每个表面都代表其中一种溶液,允许通过光电子能谱进行面向表面的检测。两股圆柱形射流的冲击还可以为每个射流施加不同的偏压,主要的可能性是在两个溶液相之间产生电势梯度。这在由碘化钠水溶液和纯液态水组成的平面射流的情况下得到了证明。讨论了不对称偏压对平面射流光电子能谱的影响。还展示了由夹在两层有机溶剂(甲苯)中的水层组成的三明治型平面射流的第一张光电子发射光谱。

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