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Effect of gold electrode crystallographic orientations on charge transport through aromatic molecular junctions

机译:金电极晶体取向对通过芳族分子结的电荷传输的影响

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We examined the electrical conduction through single-molecular junctions comprising of anthracenedithiol molecule coupled to two gold electrodes having < 1,0,1 >, < 1,1,0 > and < 1,1,1 > crystallographic orientations. Owing to this jellium model, we evaluated the values of current and conductance using non-equilibrium Green's functions combined with extended Huckel theory. This data was further interpreted in terms of transmission spectra, density of states and their molecular orbital analysis for zero bias. We evinced the oscillating conductance in all three cases, due to the oscillation of orbital energy relative to Fermi level. Our detailed analysis suggested that electrode orientation can tune the molecule-electrode coupling and hence conduction. Anthracene molecular junction with < 1,1,0 > orientation displayed favourable conduction, when compared to the other two orientations, thus can provide us an insight while designing futuristic molecular electronic devices.
机译:我们检查了通过蒽醌二硫醇分子与两个具有<1,0,1>,<1,1,0>和<1,1,1>晶体取向的金电极偶联的单分子结的导电性。由于采用了这种jellium模型,我们使用非平衡格林函数结合扩展的Huckel理论评估了电流和电导的值。根据透射光谱,状态密度及其对零偏压的分子轨道分析进一步解释了该数据。由于轨道能量相对于费米能级的振荡,我们证明了所有三种情况下的振荡电导。我们的详细分析表明,电极方向可以调节分子-电极的耦合,从而调节传导。与其他两个方向相比,具有<1,1,0>方向的蒽分子结表现出良好的导电性,因此可以为我们设计未来的分子电子器件提供一个见识。

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