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Comparative study of anchoring groups for molecular electronics: structure and conductance of Au-S-Au and Au-NH2-Au junctions

机译:分子电子学中锚定基团的比较研究:Au-S-Au和Au-NH2-Au结的结构和电导

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摘要

The electrical properties of single-molecule junctions, consisting of an organic molecule coupled to metal electrodes, are sensitive to the detailed atomic structure of the molecule-metal contact. This, in turn, is determined by the anchoring group linking the molecule to the metal. With the aim of identifying and comparing the intrinsic properties of two commonly used anchoring groups, namely thiol and amine groups, we have calculated the atomic structure and conductance traces of different Au-S-Au and Au-NH2-Au nanojunctions using density functional theory (DFT). Whereas NH2 shows a strong structural selectivity towards atop-gold configurations, S shows large variability in its bonding geometries. As a result, the conductance of the Au-NH2-Au junction is less sensitive to the structure of the gold contacts than the Au-S-Au junction. These findings support recent experiments which show that amine-bonded molecules exhibit more well-defined conductance properties than do thiol-bonded molecules.
机译:由耦合到金属电极的有机分子组成的单分子结的电学性质对分子-金属接触的详细原子结构很敏感。反过来,这取决于将分子与金属连接的锚定基团。为了鉴定和比较两个常用的锚固基团(巯基和胺基)的内在性质,我们使用密度泛函理论计算了不同Au-S-Au和Au-NH2-Au纳米结的原子结构和电导迹线(DFT)。 NH2对顶部金的构型具有很强的结构选择性,而S的键合几何形状则表现出很大的可变性。结果,与Au-S-Au结相比,Au-NH2-Au结的电导对金触点的结构不那么敏感。这些发现支持了最近的实验,这些实验表明,与硫醇键合的分子相比,与胺键合的分子具有更明确的电导性质。

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