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费米能级在水溶液的液体喷射X射线光电子能谱研究中作为能量参考。

The Fermi level as an energy reference in liquid jet X-ray photoelectron spectroscopy studies of aqueous solutions.

作者信息

Pérez Ramírez Lucía, Boucly Anthony, Saudrais Florent, Bournel Fabrice, Gallet Jean-Jacques, Maisonhaute Emmanuel, Milosavljević Aleksandar R, Nicolas Christophe, Rochet François

机构信息

Sorbonne Université, CNRS, Laboratoire de Chimie Physique Matière et Rayonnement, UMR 7614, 4 Place Jussieu, 75005 Paris, France.

出版信息

Phys Chem Chem Phys. 2021 Aug 4;23(30):16224-16233. doi: 10.1039/d1cp01511g.

Abstract

To advance the understanding of key electrochemical and photocatalytic processes that depend on the electronic structure of aqueous solutions, X-ray photoemission spectroscopy has become an invaluable tool, especially when practiced with liquid microjet setups. Determining vertical ionization energies referenced to the vacuum level, and binding energies referenced to the Fermi level, including the much-coveted reorganization energy of the oxidized species of a redox couple, requires that energy levels be properly defined. The present paper addresses specifically how the vacuum level "just outside the surface" can be known through the energy position of the rising edge of the secondary electrons, and how the Fermi level reference is uniquely determined via the introduction of a redox couple. Taking the case of the ferricyanide/ferrocyanide and ferric/ferrous couples, this study also tackles issues related to the electrokinetic effects inherent to the production of a liquid jet in a vacuum, which has become the standard water sample environment for photoemission experiments.

摘要

为了深入理解依赖于水溶液电子结构的关键电化学和光催化过程,X射线光电子能谱已成为一种非常有价值的工具,特别是在与液体微喷射装置结合使用时。确定相对于真空能级的垂直电离能以及相对于费米能级的结合能,包括氧化还原对氧化态备受关注的重组能,需要正确定义能级。本文具体阐述了如何通过二次电子上升沿的能量位置来确定“表面外”的真空能级,以及如何通过引入氧化还原对来唯一确定费米能级参考。以铁氰化物/亚铁氰化物和铁离子/亚铁离子对为例,本研究还解决了在真空中产生液体射流所固有的电动效应相关问题,而真空已成为光发射实验的标准水样环境。

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