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Tuning of catalytic CO oxidation by changing composition of Rh-Pt bimetallic nanoparticles

机译:通过改变Rh-Pt双金属纳米粒子的组成来调节CO催化氧化

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摘要

Recent breakthroughs in synthesis in nanoscience have achieved control of size and composition of nanoparticles that are relevant for catalyst design. Here, we show that the catalytic activity of CO oxidation by Rh/Pt bimetallic nanoparticles can be changed by varying the composition at a constant size (9 +/- 1 nm). Two-dimensional Rh/Pt bimetallic nanoparticle arrays were formed on a silicon surface via the Langmuir-Blodgett technique. Composition analysis with X-ray photoelectron spectroscopy agrees with the reaction stoichiometry of Rh/(Pt + Rh). CO oxidation rates that exhibit a 20-fold increase from pure Pt to pure Rh show a nonlinear increase with surface composition of the bimetallic nanoparticles that is consistent with the surface segregation of Pt. The results demonstrate the possibility of controlling catalytic activity in metal nanoparticle-oxide systems via tuning the composition of nanoparticles with potential applications for nanoscale design of industrial catalysts.
机译:纳米科学合成方面的最新突破已经实现了与催化剂设计相关的纳米颗粒尺寸和组成的控制。在这里,我们表明,通过以恒定大小(9 +/- 1 nm)改变组成,可以改变Rh / Pt双金属纳米颗粒对CO氧化的催化活性。经由Langmuir-Blodgett技术在硅表面上形成二维Rh / Pt双金属纳米颗粒阵列。 X射线光电子能谱的组成分析与Rh /(Pt + Rh)的反应化学计量一致。从纯Pt到纯Rh表现出20倍增长的CO氧化速率随双金属纳米粒子的表面组成呈非线性增加,这与Pt的表面偏析相一致。结果表明,通过调节纳米粒子的组成来控制金属纳米粒子-氧化物系统中催化活性的可能性具有工业催化剂纳米级设计的潜在应用。

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