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Sulfur dimers adsorbed on Au(111) as building blocks for sulfur octomers formation: A density functional study

机译:吸附在Au(111)上的硫二聚体作为硫八聚体形成的结构单元:密度泛函研究

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Experimental scanning tunneling microscopy (STM) studies have shown for more than two decades rectangular formations when sulfur atoms are deposited on Au(111) surfaces. The precursors have ranged from simple molecules or ions, such as SO_2 gas or sulfide anions, to more complex organosulfur compounds. We investigated, within the framework of the Density Functional Theory, the structure of these rectangular patterns assuming them entirely composed of sulfur atoms as the experimental evidence suggests. The sulfur coverage at which the simulations were carried out (0.67 ML or higher) provoked that the sulfur-sulfur association had to be taken into account for achieving a good agreement between the sets of simulated and experimental STM images. A combination of four sulfur dimers per rectangular formation properly explained the trends obtained by the experimental STM analysis which were related with the rectangles’ size and shape fluctuations together with sulfur-sulfur distances within these rectangles. Finally, a projected density of states analysis showed that the dimers were capable of altering the Au(5d) electronic states at the same level as atomic sulfur adsorbed at low coverage. Besides, sulfur dimers states were perfectly distinguished, whose presence near and above the Fermi level can explain both: sulfur-sulfur bond elongation and dimers stability when they stayed adsorbed on the surface at high coverage.
机译:实验扫描隧道显微镜(STM)研究表明,当硫原子沉积在Au(111)表面上时,已经形成了二十多年的矩形结构。前体的范围从简单的分子或离子(例如SO_2气体或硫化物阴离子)到更复杂的有机硫化合物。我们在密度泛函理论的框架内研究了这些矩形图案的结构,假设它们完全由硫原子组成,这是实验证据表明的。进行模拟时的硫覆盖率(0.67 ML或更高)导致必须考虑硫与硫的缔合,才能在模拟和实验STM图像集之间取得良好的一致性。每个矩形结构中四个硫二聚体的组合正确地解释了通过实验STM分析获得的趋势,该趋势与矩形的大小和形状波动以及这些矩形内的硫-硫距离有关。最后,预测的态密度分析表明,二聚体能够以与低覆盖率吸附的原子硫相同的水平改变Au(5d)电子态。此外,硫二聚体的状态得到了很好的区分,其在费米能级附近和以上的存在可以解释这两个方面:硫-硫键伸长和当二聚体在高覆盖率下吸附在表面时的稳定性。

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