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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Metal-Support Interactions between Nanosized Pt and Metal Oxides (WO3 and TiO2) Studied Using X-ray Photoelectron Spectroscopy
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Metal-Support Interactions between Nanosized Pt and Metal Oxides (WO3 and TiO2) Studied Using X-ray Photoelectron Spectroscopy

机译:X射线光电子能谱研究纳米级Pt与金属氧化物(WO3和TiO2)之间的金属-载体相互作用

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Platinum nanoparticles have been selectively deposited on composites of titanium oxide-carbon and tungsten oxide-carbon. Selectivity of the deposition made it possible to investigate changes in electronic properties of both platinum and oxide support, induced by the so-called strong metal-support interactions (SMSI). X-ray photoelectron spectroscopy (XPS) was used, and changes in binding energy of Pt 4f, Ti 2p, and W 4f core-levels and Pt 4f peak asymmetry were deter- mined. These parameters allowed us to state the changes in local electron density, when Pt is deposited on oxide support. In all cases the binding energy of the Pt 4f signal for platinum deposited on an oxide support was significantly lower in comparison to samples where Pt was solely supported onto carbon. The increase in Pt 4f XPS signal asymmetry was observed. This suggests an increased electron density on Pt. No electron donor could be identified from the analysis of the oxide supports. To explain the observed data, at least two effects must be considered: (i) alloy formation between Pt and the oxide support and (ii) partial charge transfer from substrate to Pt, which can be correlated to previously observed increased activity toward oxygen reduction reaction.
机译:铂纳米颗粒已经选择性地沉积在氧化钛-碳和氧化钨-碳的复合材料上。沉积的选择性使研究由所谓的强金属-载体相互作用(SMSI)引起的铂和氧化物载体的电子性能变化成为可能。使用X射线光电子能谱(XPS),确定了Pt 4f,Ti 2p和W 4f核能级的结合能的变化以及Pt 4f峰的不对称性。这些参数允许我们陈述当Pt沉积在氧化物载体上时局部电子密度的变化。在所有情况下,与仅将Pt负载在碳上的样品相比,沉积在氧化物载体上的铂的Pt 4f信号的结合能明显较低。观察到Pt 4f XPS信号不对称性增加。这表明铂上的电子密度增加。从氧化物载体的分析中不能鉴定出电子给体。为了解释观察到的数据,必须考虑至少两个作用:(i)Pt和氧化物载体之间的合金形成,以及(ii)从基体到Pt的部分电荷转移,这可能与先前观察到的对氧还原反应活性的提高有关。

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