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Excellent thermoelectric performance in weak-coupling molecular junctions with electrode doping and electrochemical gating

     

摘要

Excellent thermoelectric performance in molecular junctions requires a high power factor, a low thermal conductance, and a maximum figure of merit(ZT) near the Fermi level. In the present work, we used density functional theory in combination with a nonequilibrium Green’s function to investigate the thermoelectric performance of carbon chain-graphene junctions with both strong-coupling and weak-coupling contact between the electrodes and the molecules. The results revealed that a room temperature ZT of 4 could be obtained for the weak-coupling molecular junction, approximately one order of magnitude higher than that reached by the strong-coupling junction. The reason for this is that strong interfacial scattering suppresses most of the phonon modes in weak-coupling systems, resulting in ultralow phonon thermal conductance. The influence of electrode width,electrode doping, and electrochemical gating on the thermoelectric performance of the weak-coupling system was also investigated, and the results revealed that an excellent thermoelectric performance can be obtained near the Fermi level.

著录项

  • 来源
    《中国科学》|2020年第7期|P.78-88|共11页
  • 作者单位

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

    School of Materials Science and Engineering Hunan University of Science and Technology&Hunan Provincial Key Laboratory of Advanced Materials for New Energy Storage and Conversion XiangTan 411201 China;

    Deparment of Applied Physics School of Physics and Electronics Hunan University.Changsha 410082.China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

    thermoelectric; molecular junctions; weak-coupling; electrochemical gating; density functional theory;

  • 入库时间 2024-01-27 10:35:12

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