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Vibrational and structural properties of OH adsorbed on Pt(111)

机译:吸附在Pt(111)上的OH的振动和结构性质

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Oh species adsorbed on Pt(111) were studied in a combined investigation using scanning tunneling microscopy (STM) and high-resolution electron energy loss spectroscopy (HREELS). OH was formed by two different reactions, by reaction of H_2O with O, and as an intermediate in the reaction of O with hydrogen to H_2O. In both cases, two ordered OH phases were observed, a(√3 * √3)R 30 deg and a (3 * 3) structure, for which models are proposed. Both structures have OH coverages of 2/3, and their formation is driven by hydrogen bond formation between the adparticles; the OH adsorption site is most likely on top. OH molecules at defects in the adlayer, in particular at island edges, are spectroscopically distinguishable and contribute significantly to the vibrational spectra in disordered OH layers. This is important for the water formation reaction, where the OH islands are small. The discrepancies between previous HREELS studies on OH can be explained by the different degree of order under the various formation conditions.
机译:使用扫描隧道显微镜(STM)和高分辨率电子能量损失谱(HREELS)在联合研究中对吸附在Pt(111)上的Oh物种进行了研究。 OH是通过两个不同的反应形成的,分别是H_2O与O的反应以及作为O与氢反应生成H_2O的中间体。在这两种情况下,均观察到两个有序的OH相,即a(√3*√3)R 30度和(3 * 3)结构,为此提出了模型。两种结构的OH覆盖率均为2/3,并且它们的形成是由Ad颗粒之间形成氢键驱动的; OH的吸附位置最有可能在顶部。在光谱上可区分在附加层中的缺陷处,特别是在岛边缘处的OH分子,它们对无序OH层中的振动光谱有显着贡献。这对于OH岛很小的水形成反应很重要。先前HREELS关于OH的研究之间的差异可以通过在各种形成条件下的有序度不同来解释。

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