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Autocatalytic partial reduction of FeO(111) and Fe3O4(111) films by atomic hydrogen

机译:原子氢自动催化部分还原FeO(111)和Fe3O4(111)薄膜

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摘要

The interaction of atomic hydrogen with thin epitaxial FeO(111) and Fe3O4(111) films was studied by TDS, XPS and LEED. On the thin, one Fe-O bilayer thick FeO film, partial reduction occurs in two steps during exposure. It ends after removal of ¼ monolayer (ML) of oxygen with a 2´2 pattern appearing in LEED. This FeO0.75 film is passive against further reduction. The first reduction step saturates after removal of ~0.2 ML and shows autocatalytic kinetics with the oxygen vacancies formed during reduction causing acceleration. The second step is also autocatalytic and is related with reduction to the final composition and an improvement of the 2´2 order. A structure model explaining the two-step reduction is proposed. On the thick Fe3O4 film, irregular desorption bursts of H2O and H2 were observed during exposure. Their occurrence appears to depend on the film quality and thus on surface order. Because of the healing of reduction-induced oxygen vacancies by exchange of oxygen or iron with the bulk, a change of the surface composition was not visible. The existence of partially reduced oxide phases resistant even to atomic hydrogen is relevant to the mechanism of dehydrogenation reactions using iron oxides as catalysts.
机译:通过TDS,XPS和LEED研究了原子氢与外延FeO(111)和Fe3O4(111)薄膜的相互作用。在一层薄的Fe-O双层FeO薄膜上,曝光过程中分两步发生了部分还原。在去除LEED中出现的具有2´2图案的1/4单层氧气(ML)之后,它结束。该FeO0.75薄膜是被动的,无法进一步还原。去除〜0.2 ML后,第一个还原步骤达到饱和,并显示出在还原过程中形成的氧空位导致加速的自催化动力学。第二步也是自催化的,与减少最终成分和改善2´2级有关。提出了解释两步归约的结构模型。在厚的Fe3O4膜上,在曝光过程中观察到H2O和H2的不规则解吸爆发。它们的出现似乎取决于薄膜质量,并因此取决于表面次序。由于通过与主体交换氧或铁来还原还原引起的氧空位,因此不可见表面组成的变化。甚至对原子氢具有抗性的部分还原的氧化物相的存在与使用氧化铁作为催化剂的脱氢反应的机理有关。

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  • 作者

    Huang, W.; Ranke, W.;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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