Temesghen W, Sherwood P M A
Department of Chemistry, Willard Hall, Kansas State University, Manhattan, KS 66506-3701, USA.
Anal Bioanal Chem. 2002 Aug;373(7):601-8. doi: 10.1007/s00216-002-1362-3. Epub 2002 Jul 2.
The valence band and core-level X-ray photoelectron spectroscopy (XPS) of iron and its oxides are reported, and the valence band spectra interpreted by various calculation models. The paper focuses upon the valence band region, which shows significant differences between the metal and the following oxidized iron species: FeO, Fe(3)O(4), alpha-Fe(2)O(3), gamma-Fe(2)O(3), alpha-FeOOH and gamma-FeOOH. The core region is of little analytical value as a means of distinguishing between these species, but the valence band region shows significant differences. These differences are consistent with spectra predicted by cluster and band structure calculations. Cluster calculations are valuable as a means for interpreting the spectra of iron oxides with multiple iron sites and defect characteristics.
报道了铁及其氧化物的价带和芯能级X射线光电子能谱(XPS),并对价带谱用各种计算模型进行了解释。本文重点关注价带区域,该区域显示出金属与以下几种氧化铁物种之间存在显著差异:FeO、Fe₃O₄、α-Fe₂O₃、γ-Fe₂O₃、α-FeOOH和γ-FeOOH。作为区分这些物种的一种手段,芯能级区域几乎没有分析价值,但价带区域显示出显著差异。这些差异与团簇和能带结构计算预测的光谱一致。团簇计算作为解释具有多个铁位点和缺陷特征的氧化铁光谱的一种手段很有价值。