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Atomic Structure of an Ultrathin Fe-Silicate Film Grown on a Metal: A Monolayer of Clay?

机译:在金属上生长的超薄铁硅酸盐薄膜的原子结构:粘土单层吗?

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摘要

Ultrathin Fe-doped silicate films were prepared on a Ru(0001) surface and, as a function of the Fe/Si ratio, structurally characterized by low-energy electron diffraction, X-ray photoelectron spectroscopy, infrared reflection-absorption spectroscopy, and scanning tunneling microscopy. Density functional theory (DFT) was used to identify the atomic structure. The results show that uniform substitution of Si by Fe in the silicate bilayer frame is thermodynamically unfavorable: the film segregates into a pure silicate and an Fe-silicate phase. The DFT calculations reveal that the Fe- silicate film with an Fe/Si =1:1 ratio consists of a monolayer of [SiO_4] tetrahedra on top of an iron oxide monolayer. As such, it closely resembles the structure of the clay mineral nontronite, a representative of the Fe-rich smectites. Furthermore, the DFT calculations predict formation of bridging Fe-O-Ru bonds between the Fe-silicate film and the Ru substrate accompanied by charge transfer from the metal substrate to the film, so that iron is in the oxidation state +Ⅲ as in nontronite.
机译:在Ru(0001)表面上制备了超薄的掺Fe硅酸盐薄膜,并根据Fe / Si比,通过低能电子衍射,X射线光电子能谱,红外反射吸收光谱和扫描对结构进行了表征隧道显微镜。密度泛函理论(DFT)用于识别原子结构。结果表明,硅在硅酸盐双层框架中被Fe均匀取代Si在热力学上是不利的:该膜分离为纯硅酸盐和Fe-硅酸盐相。 DFT计算表明,Fe / Si = 1:1的Fe-硅酸盐薄膜由[SiO_4]四面体的单层组成,位于铁氧化物单层的顶部。因此,它与粘土矿物绿脱石的结构非常相似,后者是富铁蒙脱石的代表。此外,DFT计算可预测在铁硅酸盐薄膜和Ru基材之间形成桥接的Fe-O-Ru键,并伴随着电荷从金属基材转移到薄膜上,因此铁如在绿脱石中一样处于氧化态+Ⅲ。 。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第51期|19222-19228|共7页
  • 作者单位

    Institute of Chemistry, Humboldt-Universitaet zu Berlin, Unter den Linden 6, 10099 Berlin, Germany,R.W. and X.Y. contributed equally;

    Institute of Chemistry, Humboldt-Universitaet zu Berlin, Unter den Linden 6, 10099 Berlin, Germany;

    Chemical Physics Department, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany,R.W. and X.Y. contributed equally;

    Chemical Physics Department, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany;

    Chemical Physics Department, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany;

    Chemical Physics Department, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany;

    Chemical Physics Department, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany;

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  • 入库时间 2022-08-18 03:12:54

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