English

Do Thermoelectric Materials in Nanojunctions Display Material Property or Junction Property?

Mesoscale and Nanoscale Physics 2009-04-09 v3

Abstract

The miniaturization of thermoelectric nanojunctions raises a fundamental question: do the thermoelectric quantities of the bridging materials in nanojunctions remain to display material properties or show junction properties? In order to answer this question, we investigate the Seebeck coefficient SS and the thermoelectric figure of merit ZTZT especially in relation to the length characteristics of the junctions from the first-principles approaches. For SS, the metallic atomic chains reveal strong length characteristics related to strong hybridization in the electronic structures between the atoms and electrodes, while the insulating molecular wires display strong material properties due to the cancelation of exponential scalings in the DOSs. For ZTZT, the atomic wires remain to show strong junction properties. However, the length chrematistics of the insulation molecular wires depend on a characteristic temperature T0=β/γ(l)T_{0}= \sqrt{\beta/\gamma(l)} around 10K. When TT0T \ll T_{0}, where the electron transport dominates the thermal current, the molecular junctions remain to show material properties. When TT0T \gg T_{0}, where the phonon transport dominates the thermal current, the molecular junctions display junction properties.

Keywords

Cite

@article{arxiv.0904.0692,
  title  = {Do Thermoelectric Materials in Nanojunctions Display Material Property or Junction Property?},
  author = {Yu-Chang Chen and Yu-Shen Liu},
  journal= {arXiv preprint arXiv:0904.0692},
  year   = {2009}
}

Comments

4 pages and 2 figures