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Unique size-dependent nanocatalysis revealed at the single atomically precise gold cluster level

机译:在单个原子精确的金团簇水平上揭示了独特的尺寸依赖性纳米催化

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摘要

Atomically precise metal clusters have attracted increasing interest owing to their unique size-dependent properties; however, little has been known about the effect of size on the catalytic properties of metal clusters at the single-cluster level. Here, by real-time monitoring with single-molecule fluorescence microscopy the size-dependent catalytic process of individual Au clusters at single-turnover resolution, we study the size-dependent catalytic behaviors of gold (Au) clusters at the single-cluster level, and then observe the strong size effect on the catalytic properties of individual Au clusters, in both catalytic product formation and dissociation processes. Surprisingly, indicated by both experiments and density functional theory (DFT) calculations, due to such a unique size effect, besides observing the different product dissociation behaviors on different-sized Au clusters, we also observe that small Au clusters [i.e., Au15(MPA)13; here, MPA denotes 3-mercaptopropionic acid] catalyze the product formation through a competitive Langmuir–Hinshelwood mechanism, while those relatively larger Au clusters [e.g., Au18(MPA)14 and Au25(MPA)18] or nanoparticles catalyze the same process through a noncompetitive Langmuir–Hinshelwood mechanism. Such a size effect on the nanocatalysis could be attributed intrinsically to the size-dependent electronic structure of Au clusters. Further analysis of dynamic activity fluctuation of Au clusters reveals more different catalytic properties between Au clusters and traditional Au nanoparticles due to their different size-dependent structures.
机译:原子精确的金属团簇因其独特的尺寸依赖性而吸引了越来越多的关注。然而,关于尺寸对单簇水平上金属簇的催化性能的影响知之甚少。在这里,通过用单分子荧光显微镜实时监测单个周转分辨率下单个Au簇的尺寸依赖性催化过程,我们研究了在单个簇水平上金(Au)簇的尺寸依赖性催化行为,然后观察到在催化产物的形成和离解过程中,大小对单个金团簇的催化性能的强烈影响。出乎意料的是,由于实验和密度泛函理论(DFT)的计算,由于这种独特的尺寸效应,除了观察不同尺寸的Au团簇上的不同产物解离行为外,我们还观察到小的Au团簇[即Au15(MPA) )13;在这里,MPA表示3-巯基丙酸]通过竞争的Langmuir-Hinshelwood机理催化产物形成,而那些相对较大的Au簇[例如Au18(MPA)14和Au25(MPA)18]或纳米颗粒则通过非竞争性Langmuir-Hinshelwood机制。这种对纳米催化的尺寸效应可以固有地归因于金簇的尺寸依赖性电子结构。对金团簇的动态活性波动的进一步分析显示,由于它们的尺寸依赖性结构不同,因此金簇团与传统的金纳米颗粒之间的催化特性更多。

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