首页> 外文期刊>Beilstein Journal of Nanotechnology >Imaging the surface potential at the steps on the rutile TiO2(110) surface by Kelvin probe force microscopy
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Imaging the surface potential at the steps on the rutile TiO2(110) surface by Kelvin probe force microscopy

机译:用开尔文探针力显微镜对金红石型TiO2(110)表面台阶上的表面电势成像

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Although step structures have generally been considered to be active sites, their role on a TiOsub2/sub surface in catalytic reactions is poorly understood. In this study, we measured the contact potential difference around the steps on a rutile TiOsub2/sub(110)-(1 × 1) surface with Osub2/sub exposure using Kelvin probe force microscopy. A drop in contact potential difference was observed at the steps, indicating that the work function locally decreased. Moreover, for the first time, we found that the drop in contact potential difference at a step was larger than that at a step. We propose a model for interpreting the surface potential at the steps by combining the upward dipole moment, in analogy to the Smoluchowski effect, and the local dipole moment of surface atoms. This local change in surface potential provides insight into the important role of the steps in the catalytic reaction.
机译:尽管通常认为台阶结构是活性位点,但人们对它们在TiO 2 表面催化反应中的作用了解甚少。在这项研究中,我们使用开尔文探针力测量了金红石型TiO 2 (110)-(1×1)表面暴露O 2 时台阶附近的接触电势差显微镜检查。在步骤中观察到接触电势差的下降,表明功函数局部降低。此外,我们首次发现,一步的接触电势差下降幅度大于一步。我们提出了一个模型,该模型将类似于Smoluchowski效应的向上偶极矩与表面原子的局部偶极矩相结合,从而解释了台阶处的表面电势。表面电势的这种局部变化提供了对步骤在催化反应中的重要作用的认识。

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