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Formation of nanometer-sized surface platinum oxide clusters on a stepped Pt(557) single crystal surface induced by oxygen: A high-pressure STM and ambient-pressure XPS study

机译:氧气诱导的阶梯式Pt(557)单晶表面上纳米级表面氧化铂簇的形成:高压STM和常压XPS研究

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Figure Persented: We studied the oxygen-induced restructuring process on a stepped Pt(557) single crystal surface using high-pressure scanning tunneling microscopy (HP-STM) and ambient-pressure X-ray photoelectron spectroscopy (AP-XPS) at O _2 pressures up to 1 Torr. HP-STM has revealed that nanometer-sized clusters are created on Pt(557) at 1 Torr of O _2 and at room temperature. These clusters are identified as surface Pt oxide by AP-XPS. The appearance of clusters is preceded by the formation of 1D chain structures at the step edges. By using a Pt(111) surface as a reference, it was found that the step sites are the nucleation centers for the formation of surface oxide clusters. These surface oxide clusters disappear and the stepped structure is restored on Pt(557) after evacuating O _2 to 10 ~(-8) Torr. Changes in the surface oxide concentration in response to variations in the O _2 gas pressure are repeatable for several cycles. Our results that small clusters are initiated at step sites at high pressures demonstrate the importance of performing in situ characterization of stepped Pt catalysts under reaction conditions.
机译:图的观点:我们使用高压扫描隧道显微镜(HP-STM)和环境压力X射线光电子能谱(AP-XPS)在O _2上研究了阶梯状Pt(557)单晶表面上的氧诱导的重组过程压力高达1托。 HP-STM揭示了在1 Torr的O _2和室温下在Pt(557)上形成了纳米级簇。这些簇被AP-XPS识别为表面Pt氧化物。簇的出现是在台阶边缘形成一维链结构之前。通过使用Pt(111)表面作为参考,发现台阶部位是形成表面氧化物簇的成核中心。在将O _2抽空至10〜(-8)Torr之后,这些表面氧化物簇消失,并且在Pt(557)上恢复了阶梯状结构。响应于O _2气压的变化,表面氧化物浓度的变化可重复数个循环。我们的研究结果表明,在高压条件下会在步阶处引发小团簇,这证明了在反应条件下对Pt催化剂进行原位表征的重要性。

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