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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >The Innermost Three Gold Atoms Are Indispensable To Maintain the Structure of the Au-18(SR)(14) Cluster
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The Innermost Three Gold Atoms Are Indispensable To Maintain the Structure of the Au-18(SR)(14) Cluster

机译:保持Au-18(SR)(14)团簇的结构必不可少的三个金原子

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摘要

The physical and chemical properties of thiolate-protected metal nano dusters are highly dependent on their cluster composition. Such physicochemical properties could be further enriched by incorporating two noble metals inside one cluster. Here we report an efficient synthesis of thiolate-protected (AuAg)(18) clusters (or Au18-xAgx(SR)(14) dusters) by adopting a simple CO-reduction method. The composition and electronic/optical properties of the Au18-xAgx(SR)(14) dusters are rationally tuned by adjusting the feeding ratio of Ag-to-Au. The experimental data also suggest that the incoming Ag atoms would first replace the Au atoms in the core and a maximum of six Ag atoms can be incorporated into the structure of Au-18(SR)(14). More interestingly, doping more than six Ag atoms leads to the collapse of the Aug core, and the incoming Ag atoms would only go into the motif sites. A detailed investigation on the compositional and optical properties of the as-doped AuAg clusters finally highlights the crucial role of the innermost Au-3 core in maintaining the intact structure of Au18-xAgx(SR)(14) dusters.
机译:硫醇盐保护的金属纳米粉尘的物理和化学性质高度依赖于它们的团簇组成。通过将两种贵金属并入一个簇中,可以进一步丰富这种理化性质。在这里,我们报告通过采用简单的CO还原方法,有效合成硫醇盐保护的(AuAg)(18)簇(或Au18-xAgx(SR)(14)喷粉器)。 Au18-xAgx(SR)(14)喷粉器的成分和电子/光学性能可通过调节Ag与Au的进料比进行合理调整。实验数据还表明,进入的Ag原子将首先取代核中的Au原子,并且最多六个Ag原子可以掺入Au-18(SR)(14)的结构中。更有趣的是,掺杂六个以上的Ag原子会导致Aug核崩溃,而进入的Ag原子只会进入基序部位。最后,对掺杂的AuAg团簇的组成和光学性质进行了详细研究,结果表明最里面的Au-3核在保持Au18-xAgx(SR)(14)喷粉器的完整结构方面起着至关重要的作用。

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