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Comparative study of phenol and thiophenol adsorption on Cu(110).

机译:苯酚和硫酚在Cu(110)上吸附的比较研究。

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摘要

Adsorption of phenol and thiophenol (benzenethiol) on Cu(110) is investigated by a scanning tunneling microscope and electron energy loss spectroscopy. Phenol adsorbs intact and forms a cyclic trimer at 78 K. It is dehydrogenated to yield a phenoxy (C6H5O) group at 300 K. On the other hand, thiophenol is dehydrogenated to a thiophenoxy (C6H5S) group even at 78 K. Both products are bonded via chalcogen atom to the short-bridge site with the phenyl ring oriented nearly parallel to the surface. The C6H5O and C6H5S groups are preferentially assembled into the chains along the [001] and [112] directions, respectively. Dipole-dipole interaction is responsible for the chain growth, while the chain direction is ruled by the steric repulsion between chalcogen atoms and adjacent phenyl ring. This work demonstrates a crucial role of chalcogen atom of phenol species in their overlayer growth on the surface.
机译:通过扫描隧道显微镜和电子能量损失谱研究了苯酚和苯酚(苯硫醇)在铜(110)上的吸附。苯酚在78 K时完好吸收并形成环状三聚体。在300 K时将其脱氢生成苯氧基(C6H5O)。另一方面,即使在78 K时,苯硫酚也会脱氢成thiophenoxy(C6H5S)基。通过硫族元素原子键合到短桥位,苯环的取向几乎平行于表面。优选将C6H5O和C6H5S基团分别沿[001]和[112]方向组装成链。偶极-偶极相互作用负责链的增长,而链的方向则由硫属元素原子和相邻的苯环之间的空间排斥决定。这项工作证明了酚类硫族元素原子在其表面上的覆盖层生长中的关键作用。

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