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UPS 和 UV 光谱学相结合,确定了 TiO2 锐钛矿和金红石纳米粉末的能级位置。

UPS and UV spectroscopies combined to position the energy levels of TiO anatase and rutile nanopowders.

机构信息

Université de Lyon, Institut de Recherches sur la Catalyse et l'Environnement de Lyon - IRCELYON - UMR 5256, CNRS-UCB Lyon 1, 2 avenue Albert Einstein, 69626 Villeurbanne cedex, France.

出版信息

Phys Chem Chem Phys. 2018 Oct 17;20(40):25629-25637. doi: 10.1039/c8cp04614j.

Abstract

An accurate experimental determination of electronic structures in semi-conductor nanopowders is a challenging task. We propose here to combine UPS and UV-Vis spectroscopies in order to get the full description of the electronic band alignment of powder samples, TiO2 rutile and anatase. For UPS measurements, two preparation methods, namely the dropping method and electrophoretic deposition, were used to prepare layers of titania powders on a conducting substrate, ITO or Ag. Both methods lead to comparable results, with a quantitative description of the energy levels from the valence band. Combining these results with the UV-Vis spectra of the same powders enables the determination of the absolute position of the valence band maximum and the conduction band minimum. Combined UPS-UV-Vis spectroscopy provides a better insight into the properties of a powdered material which can differ from single crystal model systems. It can also be used to predict the electronic transfer in mixed phase systems during photocatalytic processes.

摘要

准确测定半导体纳米粉末的电子结构是一项具有挑战性的任务。在这里,我们建议将 UPS 和 UV-Vis 光谱学相结合,以全面描述 TiO2 金红石和锐钛矿粉末样品的能带排列。对于 UPS 测量,使用两种制备方法,即滴涂法和电泳沉积法,将 TiO2 粉末层制备在导电基底 ITO 或 Ag 上。两种方法都得到了可比的结果,从价带定量描述了能级。将这些结果与相同粉末的 UV-Vis 光谱相结合,可确定价带最大值和导带最小值的绝对位置。UPS-UV-Vis 光谱学的组合提供了对粉末材料性质的更深入了解,这些性质可能与单晶模型系统不同。它还可用于预测光催化过程中混合相系统中的电子转移。

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