English

Electronic structure and thermoelectric properties of n- and p-type SnSe from first principles calculations

Materials Science 2015-05-11 v3

Abstract

We present results of electronic band structure, Fermi surface and electron transport properties calculations in orthorhombic nn- and pp-type SnSe, applying Korringa-Kohn-Rostoker method and Boltzmann transport approach. The analysis accounted for temperature effect on crystallographic parameters in PnmaPnma structure as well as the phase transition to CmCmCmCm structure at Tc807T_c\sim 807 K. Remarkable modifications of conduction and valence bands were notified upon varying crystallographic parameters within the structure before TcT_c, while the phase transition mostly leads to jump in the band gap value. The diagonal components of kinetic parameter tensors (velocity, effective mass) and resulting transport quantity tensors (electrical conductivity σ\sigma, thermopower SS and power factor PF) were computed in wide range of temperature (1590015-900 K) and, hole (pp-type) and electron (nn-type) concentration (1017102110^{17}-10^{21} cm3^{-3}). SnSe is shown to have strong anisotropy of the electron transport properties for both types of charge conductivity, as expected for the layered structure. In general, pp-type effective masses are larger than nn-type ones. Interestingly, pp-type SnSe has strongly non-parabolic dispersion relations, with the 'pudding-mold'-like shape of the highest valence band. The analysis of σ\sigma, SS and PF tensors indicates, that the inter-layer electron transport is beneficial for thermoelectric performance in nn-type SnSe, while this direction is blocked in pp-type SnSe, where in-plane transport is preferred. Our results predict, that nn-type SnSe is potentially even better thermoelectric material than pp-type one. Theoretical results are compared with single crystal pp-SnSe measurements, and good agreement is found.

Keywords

Cite

@article{arxiv.1502.04599,
  title  = {Electronic structure and thermoelectric properties of n- and p-type SnSe from first principles calculations},
  author = {K. Kutorasinski and B. Wiendlocha and S. Kaprzyk and J. Tobola},
  journal= {arXiv preprint arXiv:1502.04599},
  year   = {2015}
}