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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Charge Polarization at Catalytic Metal-Support Junctions, Part A: Kelvin Probe Force Microscopy Results of Noble Metal Nanoparticles
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Charge Polarization at Catalytic Metal-Support Junctions, Part A: Kelvin Probe Force Microscopy Results of Noble Metal Nanoparticles

机译:催化金属-载体连接处的电荷极化,A部分:贵金属纳米粒子的开尔文探针力显微镜结果

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摘要

Metal oxide-supported nanoparticles of the platinum group metals Pt, Rh, and Pd were studied at ambient temperature and atmosphere using Kelvin probe force microscopy. In all cases, the results reveal electron transfer from the metal to the oxide support, which decreases in the order TiO2 > CeO2 Al2O3, leading to charge polarization at the Schottky-type interfaces analogous to that of a parallel plane capacitor. This polarization cancels out to a large extent for the Kelvin signal. On top of this there is a much smaller number of positive charges at the outer catalyst particle surface, compensated by negative charges near the oxide surface. They show the same trend over the different oxides. These charges determine the constant electrical potential of the metal and are suggested to be the important component of the electronic catalytic metal support interactions, which are known to be much stronger for reducible than for nonreducible oxides.
机译:使用开尔文探针力显微镜在环境温度和大气条件下研究了铂族金属Pt,Rh和Pd的金属氧化物负载的纳米颗粒。在所有情况下,结果都表明电子从金属转移到氧化物载体,并以TiO2> CeO2 Al2O3的顺序降低,从而导致在肖特基型界面上的电荷极化类似于平行平面电容器。这种极化在很大程度上消除了开尔文信号。最重要的是,在外部催化剂颗粒表面上的正电荷数量要少得多,由氧化物表面附近的负电荷所补偿。它们在不同的氧化物上显示出相同的趋势。这些电荷决定了金属的恒定电势,并被认为是电子催化金属载体相互作用的重要组成部分,已知这些金属对可还原性的作用比对不可还原性的氧化物要强得多。

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