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Pd model catalysts on clean and modified HOPG: Growth, adsorption properties, and stability

机译:清洁和改性HOPG的Pd模型催化剂:生长,吸附性能和稳定性

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Carbon is a common support material for noble metal nanoparticles in heterogeneous catalysis and electrocatalysis. Very few surface-science-based model studies have been performed, however, with noble metal nanoparticles on carbon supports. In this work, we present the first model study on carbon-supported noble metal nanoparticles using infrared reflection absorption spectroscopy (IRAS). The model catalyst is prepared on highly oriented pyrolytic graphite (HOPG) by physical vapor deposition (PVD) of Pd metal. We characterize the particle growth and morphology by scanning tunneling microscopy (STM) and atomic force microscopy (AFM) and probe the adsorption properties by IRAS of adsorbed CO.PVD of Pd on clean HOPG leads to the formation of very large, weakly interacting particles. In order to increase the nucleation density upon Pd deposition, the HOPG surface was modified by Ar+and O+bombardment. The defect structures formed were characterized by STM and by IRAS during the ion bombardment. On the pretreated HOPG, Pd nucleates homogeneously and stable Pd nanoparticles (NPs) are formed. We investigated the adsorption properties of the Pd NPs as a function of the particle size and their thermal stability upon annealing. It is shown that carbon species migrate from the HOPG modified by ion bombardment onto the Pd NPs leading to modification of the CO adsorption properties.The work shows that Pd/HOPG is a very well-suited model system for in-situ adsorption and reaction studies by IRAS, in spite of the non-metallicity of the support.
机译:碳是非均相催化和电催化中贵金属纳米粒子的常见载体材料。然而,极少数基于表面科学的模型研究已经在碳载体上进行了贵金属纳米颗粒的研究。在这项工作中,我们使用红外反射吸收光谱法(IRAS)对碳负载的贵金属纳米颗粒进行了首次模型研究。模型催化剂是通过Pd金属的物理气相沉积(PVD)在高度取向的热解石墨(HOPG)上制备的。我们通过扫描隧道显微镜(STM)和原子力显微镜(AFM)表征了颗粒的生长和形貌,并通过IRAS探测了吸附的CO的吸附性能.Pd在干净的HOPG上的PVD导致形成非常大的,弱相互作用的颗粒。为了增加Pd沉积时的成核密度,HOPG表面通过Ar +和O +轰击进行了改性。在离子轰击过程中,通过STM和IRAS对形成的缺陷结构进行了表征。在预处理的HOPG上,Pd均匀地成核,并形成稳定的Pd纳米颗粒(NPs)。我们研究了Pd NPs的吸附性能随颗粒大小及其退火时的热稳定性的变化。结果表明,碳原子从离子轰击改性的HOPG迁移到Pd NPs上,从而导致CO吸附性能的改变.Pd / HOPG是非常适合原位吸附和反应研究的模型系统。尽管支撑物是非金属的,但仍由IRAS提供。

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