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A kinetic Monte Carlo study of Pt on Au(111) with applications to bimetallic catalysis

机译:Au(111)上Pt的动力学Monte Carlo研究及其在双金属催化中的应用

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Pt-decorated Au nanostructures and bimetallic PtAu nanoparticles have been shown to act as catalysts. Consequently we investigate the formation of extended Pt decorations of an Au island edge on Au(111) as possible catalysts. The investigation is by simulation using the kinetic Monte Carlo method. The effects of varying the rate of deposition of Pt atoms and the simulation temperature on the morphology of the resulting Pt nanostructures were investigated. The thickness and roughness of the nanostructures are readily influenced, with temperature being the more important factor. A combination of both high temperature and low deposition rate was the most effective at reducing the roughness. PtAu alloying in the Au island edge was identified. This work is (to the best of our knowledge) the first kinetic Monte Carlo simulation study of the formation of Pt nanostructures on Au. We demonstrate how the morphology of the Pt nanostructures can be controlled. The nanostructures studied here, comprising an adjustable mix of Pt overlayers and novel 1D PtAu surface alloys, are expected to be of considerable interest as potential bimetallic nano-catalysts.
机译:Pt装饰的Au纳米结构和双金属PtAu纳米颗粒已显示出可作为催化剂的作用。因此,我们研究了在Au(111)上作为可能的催化剂在Au岛边缘上扩展的Pt装饰的形成。该研究是通过使用动力学蒙特卡洛方法进行的模拟进行的。研究了改变Pt原子沉积速率和模拟温度对所得Pt纳米结构形态的影响。纳米结构的厚度和粗糙度容易受到影响,而温度是更重要的因素。高温和低沉积速率的组合对于降低粗糙度最有效。在Au岛边缘发现了PtAu合金化。 (据我们所知)这项工作是对Au上Pt纳米结构形成的第一个动力学Monte Carlo模拟研究。我们演示了如何控制铂纳米结构的形态。此处研究的纳米结构,包括可调节的P​​t覆盖层和新型一维PtAu表面合金的混合物,有望作为潜在的双金属纳米催化剂引起人们的极大兴趣。

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