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Adsorbates on Gd(0001): A combined scanning tunneling microscopy and photoemission study

机译:Gd(0001)上的吸附物:扫描隧道显微镜和光发射研究的组合

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We report on the electronic structure of hydrogen, oxygen, and carbon monoxide on Gd(0001), and the development of adsorption processes studied by means of photoelectron spectroscopy in combination with scanning tunneling microscopy and spectroscopy, respectively. Due to its high spatial resolution, the visualization of the adsorption process is obtained. For hydrogen, it was found that the adsorption occurs in two steps. It starts at crystallographic surface imperfections. From these nucleation centers, a domainlike spreading is present which is strongly hindered at surface steps. Oxygen on the Gd monolayer possesses an ordered structure which could be determined to be (2 root 3 x 2 root 3)R30 degrees. Carbon monoxide adsorbs molecularly at low temperatures and dissociatively at room temperature. The adsorption process of a hydrogen-covered Gd film being exposed to carbon monoxide consists of five steps. At the beginning the whole amount of adsorbed hydrogen atoms is removed from the surface. In the intermediate regime, carbon and oxygen is adsorbed at or near the surface. The last step demonstrates the oxidation to Gd2O3, acting as a catalyst for the transformation of CO to CO2 which creates stable carbonate species at the surface. This formation also occurs for the adsorption of oxygen and carbon monoxide. [S0163-1829(99)07411-1]. [References: 43]
机译:我们报告了氢,氧和一氧化碳在Gd(0001)上的电子结构,以及通过光电子能谱结合扫描隧道显微镜和能谱学研究的吸附过程的发展。由于其较高的空间分辨率,因此可以看到吸附过程。对于氢气,发现吸附发生在两个步骤中。它始于晶体学表面缺陷。从这些成核中心开始,出现了在表面台阶处强烈阻碍的畴状扩展。 Gd单层上的氧气具有有序结构,可以确定为(2根3 x 2根3)R30度。一氧化碳在低温下分子吸附,在室温下解离。氢气覆盖的Gd膜暴露于一氧化碳的吸附过程包括五个步骤。在开始时,从表面去除了全部吸附的氢原子。在中间状态下,碳和氧被吸附在表面或表面附近。最后一步证明了氧化成Gd2O3的作用,是将CO转化为CO2的催化剂,从而在表面形成稳定的碳酸盐。这种形成也发生在氧气和一氧化碳的吸附上。 [S0163-1829(99)07411-1]。 [参考:43]

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