Low-Temperature Cluster Catalysis

化学 星团(航天器) 催化作用 反应性(心理学) 化学物理 纳米颗粒 化学反应 计算化学 物理化学 纳米技术 有机化学 医学 替代医学 材料科学 程序设计语言 病理 计算机科学
作者
Ken Judai,Stéphane Abbet,Anke S. Wörz,Ueli Heiz,Claude R. Henry
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:126 (9): 2732-2737 被引量:167
标识
DOI:10.1021/ja039037k
摘要

Free and supported metal clusters reveal unique chemical and physical properties, which vary as a function of size as each cluster possesses a characteristic electron confinement. Several previous experimental results showed that the outcome of a given chemical reaction can be controlled by tuning the cluster size. However, none of the examples indicate that clusters prepared in the gas phase and then deposited on a support material are indeed catalytically active over several reaction cycles nor that their catalytic properties remain constant during such a catalytic process. In this work we report turn-over frequencies (TOF) for Pd(n) (n = 4, 8, 30) clusters using pulsed molecular beam experiments. The obtained results illustrate that the catalytic reactivity for the NO reduction by CO (CO + NO --> 1/2N(2) + CO(2)) is indeed a function of cluster size and that the measured TOF remain constant at a given temperature. More interestingly, the temperature of maximal reactivity is at least 100 K lower than observed for palladium nanoparticles or single crystals. One reason for this surprising observation is the character of the binding sites of these small clusters: N(2) forms already at relatively low temperatures (400 and 450 K) and therefore poisoning by adsorbed nitrogen adatoms is prevented. Thus, small clusters not only open the possibility of tuning a catalytic process by changing cluster size, but also of catalyzing chemical reactions at low temperatures.
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