Song Chunrong, Ge Qingfeng, Wang Lichang
Department of Chemistry and Biochemistry, Southern Illinois University, Carbondale, Illinois 62901, USA.
J Phys Chem B. 2005 Dec 1;109(47):22341-50. doi: 10.1021/jp0546709.
Density functional theory (DFT) calculations were performed to study Pt/Au clusters of different size, structure, and composition as well as their interactions with a CO molecule. Among the Pt/Au isomers studied here, the planar structure is the most stable structure in many Pt compositions, although three-dimensional structures become more stable with increasing Pt composition. Furthermore, structures with the Pt atoms surrounded by Au atoms are more stable among homotops. However, these conclusions will be altered if ligands are attached to the Pt/Au bimetallic clusters, as evidenced from the results of CO adsorption. When both Au and Pt sites are exposed, CO adsorption at the Pt site is stronger. If only a Au site is available for CO adsorption, the strongest adsorption occurs at approximately 25% Pt composition, which may correlate with the experimentally observed reactivity of the core-shell structured Pt/Au nanoparticles.
进行了密度泛函理论(DFT)计算,以研究不同尺寸、结构和组成的Pt/Au团簇及其与CO分子的相互作用。在这里研究的Pt/Au异构体中,平面结构在许多Pt组成中是最稳定的结构,尽管随着Pt组成的增加三维结构变得更稳定。此外,在同拓扑结构中,Pt原子被Au原子包围的结构更稳定。然而,如果将配体附着到Pt/Au双金属团簇上,这些结论将会改变,CO吸附结果证明了这一点。当Au和Pt位点都暴露时,CO在Pt位点的吸附更强。如果只有一个Au位点可用于CO吸附,则最强吸附发生在约25%的Pt组成处,这可能与实验观察到的核壳结构Pt/Au纳米颗粒的反应性相关。