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A quantum chemical study of hydrogen adsorption on carbon-supported palladium clusters

机译:碳负载钯簇对氢吸附的量子化学研究

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A key step for achieving better insight into catalytic hydrogenation reactions is to understand in detail the process of hydrogen adsorption on the catalyst. The present article focuses on hydrogen adsorption on carbon-supported palladium clusters, which are nowadays one of the most common catalysts in industrial applications. Density functional theory is applied to study Pd-6 and Pd-21 clusters to reveal the influence of the carbon support material on the properties of the catalyst as well as on the mechanisms and energetics of the hydrogen adsorption. In general, a stepwise hydrogen adsorption process is observed consisting of molecular adsorption followed by dissociative chemisorption. The carbon support material does not noticeably affect the reaction mechanisms, but has a large influence on energy barriers and preferential adsorption sites. Our comparison of Pd-6 and Pd-21 systems reveals that small clusters, such as Pd-6, are able to model some but not all important properties of palladium nanoparticles and, therefore, it is essential to also study larger cluster sizes.
机译:实现更好地了解催化氢化反应的关键步骤是详细了解催化剂对氢吸附的方法。本文侧重于碳负载钯簇的氢吸附,现在是工业应用中最常见的催化剂之一。密度函数理论应用于研究PD-6和PD-21簇,揭示碳载体材料对催化剂的性能以及氢吸附的机制和能量。通常,观察到由分离化学吸附的分子吸附组成的逐步氢吸附过程。碳载体材料并不明显影响反应机制,但对能量屏障和优先吸附位点具有很大影响。我们对PD-6和PD-21系统的比较揭示了小簇,例如PD-6,能够模拟钯纳米粒子的一些但不是所有重要的性质,因此也必须研究更大的簇尺寸。

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