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The effect of fluctuations, thermal and otherwise, on the temperature dependence of thermopower in aromatic chain single-molecule junctions

机译:芳烃链单分子结中的热波动以及其他因素对热电的温度依赖性的影响

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摘要

We report a theoretical study of the thermopower of single-molecule junctions with focus on phenyl-based molecular junctions. In contrast to prior studies, thermal fluctuations of the torsional angle between the phenyl rings and variations in the position of the molecular level alignment with respect to the electrode Fermi energy were taken into account. Full thermopower histograms were obtained, and their dependence on the magnitude of the fluctuations was studied. We found that at large molecular orbital variations, the thermopower becomes strongly dependent on the torsion angle and can even change sign. This results in a marked effect of fluctuations on the thermopower distribution, yielding an average thermopower at high temperatures that differs (smaller or larger) from the fluctuation-free value, depending on the strength of fluctuations. We therefore conclude that fluctuations should be taken into account both when extracting single-molecule parameters, such as the molecular level-Fermi level offset, and in predictions of the thermopower of molecular junctions.
机译:我们报告了对基于苯基的分子结的单分子结的热功率的理论研究。与现有研究相反,考虑了苯环之间的扭转角的热波动以及相对于电极费米能的分子水平取向的位置的变化。获得了完整的热电直方图,并研究了它们对波动幅度的依赖性。我们发现,在较大的分子轨道变化下,热功率变得强烈依赖于扭转角,甚至可以改变符号。这会导致波动对热电分布产生显着影响,根据波动的强度,在高温下会产生与无波动值不同(较小或较大)的平均热功率。因此,我们得出结论,在提取单分子参数(例如分子水平-费米能级偏移)时以及在预测分子结的热功率时,都应考虑到波动。

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