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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Thermal conductance and thermoelectric figure of merit of C^-based single-molecule junctions: Electrons, phonons, and photons
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Thermal conductance and thermoelectric figure of merit of C^-based single-molecule junctions: Electrons, phonons, and photons

机译:基于C ^的单分子结的热导和热电因数:电子,声子和光子

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摘要

Motivated by recent experiments, we present here an ab initio study of the impact of the phonon transport on the thermal conductance and thermoelectric figure of merit of C_(60)-based single-molecule junctions. To be precise, we combine density functional theory with nonequilibrium Green's-function techniques to compute these two quantities in junctions with either a C_(60) monomer or a C_(60) dimer connected to gold electrodes, taking into account the contributions of both electrons and phonons. Our results show that for C_(60) monomer junctions phonon transport plays a minor role in the thermal conductance and, in turn, in the figure of merit, which can reach values on the order of 0.1, depending on the contact geometry. In C_(60) dimer junctions, phonons are transported less efficiently, but they completely dominate the thermal conductance and reduce the figure of merit as compared to monomer junctions. Thus, claims that by stacking C_(60) molecules one could achieve high thermoelectric performance, which have been made without considering the phonon contribution, are not justified. Moreover, we analyze the relevance of near-field thermal radiation for the figure of merit of these junctions within the framework of fluctuational electrodynamics. We conclude that photon tunneling can be another detrimental factor for the thermoelectric performance, which has been overlooked so far in the field of molecular electronics. Our study illustrates the crucial roles that phonon transport and photon tunneling can play, when critically assessing the performance of molecular junctions as potential nanoscale thermoelectric devices.
机译:受近期实验的启发,我们从头开始研究了声子传输对基于C_(60)的单分子结的热导和热电因数的影响。确切地说,我们将密度泛函理论与非平衡格林函数技术结合起来,以考虑到两个电子的贡献,计算与金电极连接的C_(60)单体或C_(60)二聚体的结中的这两个量和声子。我们的结果表明,对于C_(60)单体结,声子传输在热导中起次要作用,而在品质因数中,取决于接触的几何形状,其能达到约0.1的值。在C_(60)二聚体结中,声子的传输效率较低,但与单体结相比,它们完全控制了热导并降低了品质因数。因此,不考虑通过堆叠C_(60)分子就可以实现高热电性能的主张是合理的,而这种热电性能是在不考虑声子贡献的情况下做出的。此外,我们在波动电动力学的框架内分析了这些结的品质因数的近场热辐射的相关性。我们得出的结论是,光子隧穿可能是热电性能的另一个有害因素,这在分子电子学领域迄今已被忽视。我们的研究表明,当严格评估分子结作为潜在的纳米级热电器件的性能时,声子传输和光子隧穿可发挥关键作用。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics 》 |2017年第24期| 245404.1-245404.11| 共11页
  • 作者单位

    Department of Physics, University of Konstanz, D-78457 Konstanz, Germany;

    Department of Physics, University of Konstanz, D-78457 Konstanz, Germany;

    Departamento de Fisica Teorica de la Materia Condensada and Condensed Matter Physics Center (1FIMAC), Universidad Autonoma de Madrid, E-28049 Madrid, Spain;

    Department of Physics, University of Konstanz, D-78457 Konstanz, Germany;

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