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Local electronic structure and density of edge and facet atoms at Rh nanoclusters self-assembled on a graphene template

机译:在石墨烯模板上自组装的Rh纳米团簇的局部电子结构以及边缘和小平面原子的密度

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The chemical and physical properties of nanoclusters largely depend on their sizes and shapes. This is partly due to finite size effects influencing the local electronic structure of the nanocluster atoms which are located on the nanofacets and on their edges. Here we present a thorough study on graphene-supported Rh nanocluster assemblies and their geometry-dependent electronic structure obtained by combining high-energy resolution core level photoelectron spectroscopy, scanning tunneling microscopy, and density functional theory. We demonstrate the possibility to finely control the morphology and the degree of structural order of Rh clusters grown in register with the template surface of graphene/Ir(111). By comparing measured and calculated core electron binding energies, we identify edge, facet, and bulk atoms of the nanoclusters. We describe how small interatomic distance changes occur while varying the nanocluster size, substantially modifying the properties of surface atoms. The properties of under-coordinated Rh atoms are discussed in view of their importance in heterogeneous catalysis and magnetism.
机译:纳米团簇的化学和物理性质在很大程度上取决于它们的大小和形状。这部分是由于有限的尺寸效应影响了位于纳米面及其边缘的纳米团簇原子的局部电子结构。在这里,我们对石墨烯负载的Rh纳米簇组装体及其依赖几何的电子结构进行了深入研究,这些组装体是通过结合高能分辨率核心能级光电子能谱,扫描隧道显微镜和密度泛函理论获得的。我们证明了可以精细地控制与石墨烯/ Ir(111)的模板表面对齐生长的Rh簇的形态和结构顺序的程度。通过比较测量和计算的核心电子结合​​能,我们确定了纳米团簇的边缘,刻面和整体原子。我们描述了在改变纳米团簇尺寸的同时,原子间距离的微小变化是如何发生的,从而大大改变了表面原子的性质。鉴于配位不足的Rh原子在多相催化和磁性中的重要性,对它们的性质进行了讨论。

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