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Structural transition of gold nanoclusters: from the golden cage to the golden pyramid

机译:金纳米团簇的结构转变:从金笼到金金字塔

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How nanoclusters transform from one structural type to another as a function of size is a critical issue in cluster science. Here we report a study of the structural transition from the golden cage Au_(16)~- to the pyramidal Au_(20)~-. We obtained distinct experimental evidence that the cage-to-pyramid crossover occurs at Au_(18)~-, for which the cage and pyramidal isomers are nearly degenerate and coexist experimentally. The two isomers are observed and identified by their different interactions with O_2 and Ar. The cage isomer is observed to be more reactive with O2 and can be preferentially 'titrated' from the cluster beam, whereas the pyramidal isomer has slightly stronger interactions with Ar and is favored in the Au_(18)Ar_X~- van der Waals complexes. The current study allows the detailed structural evolution and growth routes from the hollow cage to the compact pyramid to be understood and provides information about the structure-function relationship of the Au _(18)~- cluster.
机译:纳米团簇如何根据大小从一种结构类型转变为另一种结构类型是集群科学中的关键问题。在这里,我们报告了从金笼Au_(16)〜-向金字塔型Au_(20)〜-的结构转变的研究。我们获得了独特的实验证据,表明笼-金字塔交叉发生在Au_(18)〜-处,为此笼和锥体异构体几乎退化并在实验中共存。通过与O_2和Ar的不同相互作用观察和鉴定了这两种异构体。观察到笼形异构体与O2的反应性更高,并且可以优先从簇束中“滴定”,而金字塔形异构体与Ar的相互作用稍强,并且在Au_(18)Ar_X-van der Waals络合物中受到青睐。当前的研究使人们能够理解从空心笼到致密金字塔的详细结构演化和生长途径,并提供有关Au _(18)〜-团簇的结构-功能关系的信息。

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