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Effects of asymmetric contacts on single molecule conductances of HS(CH2)nCOOH in nano-electrical junctions

机译:不对称接触对纳米电结中HS(CH2)nCOOH单分子电导的影响

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摘要

A scanning tunnelling microscope has been used to determine the conductance of single molecular wires with the configuration X-bridge-X, X-bridge-Y and Y-bridge-Y (X = thiol terminus and Y = COOH). We find that for molecular wires with mixed functional groups (X-bridge-Y) the single molecule conductance decreases with respect to the comparable symmetric molecules. These differences are confirmed by theoretical computations based on a combination of density functional theory and the non-equilibrium Green functions formalism. This study demonstrates that the apparent contact resistance, as well as being highly sensitive to the type of the anchoring group is also strongly influenced by contact-asymmetry of the single molecular junction which in this case decreases the transmission. This highlights that contact asymmetry is a significant factor to be considered when evaluating nano-electrical junctions incorporating single molecules.
机译:扫描隧道显微镜已用于确定具有X-桥-X,X-桥-Y和Y-桥-Y构型的单分子导线的电导率(X =硫醇末端,Y = COOH)。我们发现,对于具有混合官能团(X-bridge-Y)的分子线,单分子电导相对于可比的对称分子降低。这些差异通过基于密度泛函理论和非平衡格林函数形式主义的理论计算得到证实。这项研究表明,表观接触电阻以及对锚定基团的类型高度敏感还受到单个分子结的接触不对称性的强烈影响,在这种情况下,这会降低透射率。这突显了接触不对称性是评估掺入单个分子的纳米电结时要考虑的重要因素。

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