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Efficiency of thermoelectric energy conversion in biphenyl-dithiol junctions: Effect of electron-phonon interactions

机译:联苯-二硫醇连接中的热电能量转换效率:电子-声子相互作用的影响

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The electron-phonon interaction is the dominant mechanism of inelastic scattering in molecular junctions. Here we report on its effect on the thermoelectric properties of single-molecule devices. Using density functional theory and the nonequilibrium Green's function formalism we calculate the thermoelectric figure of merit for a biphenyl-dithiol molecule between two Al electrodes under an applied gate voltage. We find that the effect of electron-phonon coupling on the thermoelectric characteristics strongly varies with the molecular geometry. Two molecular configurations characterized by the torsion angles between the two phenyl rings of 30° and 90° exhibit significantly different responses to the inelastic scattering. We also use molecular dynamics calculations to investigate the torsional stability of the biphenyl-dithiol molecule and the phonon thermal transport in the junction.
机译:电子-声子相互作用是分子结中非弹性散射的主要机理。在这里,我们报告其对单分子器件热电性能的影响。使用密度泛函理论和非平衡格林函数形式,我们计算了施加的栅极电压下两个Al电极之间的联苯-二硫醇分子的热电性能。我们发现电子-声子耦合对热电特性的影响随分子的几何形状而变化很大。以两个苯环之间30°和90°的扭转角为特征的两个分子构型对非弹性散射表现出明显不同的响应。我们还使用分子动力学计算来研究联苯-二硫醇分子的扭转稳定性和结中声子的热传递。

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