首页> 外文期刊>The Journal of Chemical Physics >Ferrocene-1,1'-dithiol as molecular wire between Ag electrodes: The role of surface defects
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Ferrocene-1,1'-dithiol as molecular wire between Ag electrodes: The role of surface defects

机译:二茂铁-1,1'-二硫醇作为Ag电极之间的分子丝:表面缺陷的作用

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摘要

The interaction of ferrocene-1,1'-dithiol (FDT) with two parallel Ag(111) surfaces has been theoretically studied at density-functional level. The effect of surface defects on the energetic and electronic structure was investigated. The electronic transport properties are studied with the nonequilibrium Green's function approach. The adsorption geometry has a strong effect on the electronic levels and conductivity. The presence of point defects strongly enhances the molecule-surface interaction but has a surprisingly small effect on the density of states near the Fermi energy. The FDT-surface bond is particularly strong near terraces or steps and leads to significant shifts of the molecular orbitals relative to the gas phase. For all considered defect types except the single adatom the electronic conductivity through the FDT molecule is decreased compared to adsorption on perfect surfaces. (c) 2008 American Institute of Physics.
机译:二茂铁-1,1'-二硫醇(FDT)与两个平行的Ag(111)表面的相互作用已在密度功能水平上进行了理论研究。研究了表面缺陷对高能和电子结构的影响。利用非平衡格林函数方法研究了电子传输性质。吸附几何形状对电子能级和电导率有很大影响。点缺陷的存在极大地增强了分子与表面的相互作用,但是对费米能量附近的态密度影响很小。 FDT-表面键在阶地或台阶附近特别牢固,并导致分子轨道相对于气相的明显移动。对于所有考虑的缺陷类型(单个吸附原子除外),与在完美表面上的吸附相比,通过FDT分子的电子电导率会降低。 (c)2008年美国物理研究所。

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