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首页> 外文期刊>Angewandte Chemie >The Metal-Support Interaction Concerning the Particle Size Effect of Pd/Al2O3 on Methane Combustion
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The Metal-Support Interaction Concerning the Particle Size Effect of Pd/Al2O3 on Methane Combustion

机译:关于Pd / Al2O3对甲烷燃烧的粒度效应的金属支持相互作用

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摘要

The particle size effect of Pd nanoparticles supported on alumina with various crystalline phases on methane combustion was investigated. Pd/, -Al2O3 with weak metal-support interaction showed a volcano-shaped dependence of the catalytic activity on the size of Pd particles, and the catalytic activity of the strongly interacted Pd/-Al2O3 increased with the particle size. Based on a structural analysis of Pd nanoparticles using CO adsorption IR spectroscopy and spherical aberration-corrected scanning/transmission electron microscopy, the dependence of catalytic activity on Pd particle size and the alumina crystalline phase was due to the fraction of step sites on Pd particle surface. The difference in fraction of the step site is derived from the particle shape, which varies not only with Pd particle size but also with the strength of metal-support interaction. Therefore, this interaction perturbs the particle size effect of Pd/Al2O3 for methane combustion.
机译:研究了对氧化铝氧化铝的Pd纳米粒子对甲烷燃烧中的各种结晶相的粒径效应。 具有弱金属载体相互作用的Pd /,-al2O3显示催化活性对Pd颗粒尺寸的催化活性的依赖性,并且粒径的强相互作用的Pd / -Al2O3的催化活性随粒径而增加。 基于使用CO吸附IR光谱和球面像差校正扫描/透射电子显微镜的PD纳米颗粒的结构分析,催化活性对Pd粒径和氧化铝结晶相的依赖性是由于Pd颗粒表面上的步骤位点的一部分 。 阶梯位点的级分衍生自颗粒形状,其不仅在Pd粒径而异,而且与金属支撑相互作用的强度变化。 因此,该相互作用渗透Pd / Al2O3的粒度效应,用于甲烷燃烧。

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