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首页> 外文期刊>The Journal of Chemical Physics >Adsorption of molecular oxygen on the Ag(111) surface: A combined temperature-programmed desorption and scanning tunneling microscopy study
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Adsorption of molecular oxygen on the Ag(111) surface: A combined temperature-programmed desorption and scanning tunneling microscopy study

机译:Ag(111)表面上分子氧的吸附:组合温度编程的解吸和扫描隧道显微镜研究

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The adsorption of O-2 on Ag(111) between 300 and 500 K has been studied with temperature-programmed desorption (TPD) and scanning tunneling microscopy (STM). At the first stage of adsorption, the disordered local oxide phase (commonly looking in STM as an array of black spots) is formed on the surface irrespective of the substrate temperature. The maximum concentration of black spots was found to be approximate to 0.11 ML, which corresponds to an oxygen coverage of approximate to 0.66 ML. Taking into account that the nucleation of the Ag(111)-p(4 x 4)-O phase starts after the saturation of the disordered phase, one can conclude that its coverage is at least not less than 0.66 ML. The analysis of STM and TPD data shows that the thermodesorption peak (m/e = 32) at 570 K is related exclusively to the decomposition of the p(4 x 4) phase, while the local oxide phase does not contribute to desorption. Published by AIP Publishing.
机译:通过温度编程的解吸(TPD)和扫描隧道显微镜(STM)研究了300至500K之间的o-2的吸附(111)。 在吸附的第一阶段,在表面上,在表面温度上形成无序的局部氧化物相(通常在STM上观察STM)。 发现黑点的最大浓度近似为0.11ml,其对应于近似约0.66ml的氧覆盖率。 考虑到Ag(111)-P(4×4)-O相的成核在无序相饱和后开始,可以得出结论,其覆盖率至少不小于0.66mL。 STM和TPD数据的分析表明,570 k处的热渗透峰(M / E = 32)仅与P(4×4)相的分解相关,而局部氧化物相没有贡献解吸。 通过AIP发布发布。

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