English

Ab-initio design of new Heusler materials for thermoelectric applications

Computational Physics 2017-12-20 v1 Applied Physics

Abstract

In search of new prospects for thermoelectric materials, using ab-initio calculations and semi-classical Boltzmann theory, we have systematically investigated the electronic structure and transport properties of 18-valence electron count cobalt based half-Heusler alloys with prime focus on CoVSn, CoNbSn, CoTaSn, CoMoIn, and CoWIn. The effect of doping on transport properties has been studied under the rigid band approximation. The maximum power factor, S2σ^2\sigma, for all systems is obtained on hole doping and is comparable to the existing thermoelectric material CoTiSb. The stability of all the systems is verified by phonon calculations. Based on our calculations, we suggest that CoVSn, CoNbSn, CoTaSn, CoMoIn and CoWIn could be potential candidates for high temperature thermoelectric materials.

Keywords

Cite

@article{arxiv.1708.04768,
  title  = {Ab-initio design of new Heusler materials for thermoelectric applications},
  author = {Mohd Zeeshan and Harish K. Singh and Jeroen van den Brink and Hem C. Kandpal},
  journal= {arXiv preprint arXiv:1708.04768},
  year   = {2017}
}

Comments

10 pages, 7 figures