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First principles study on the thermoelectric performance of CaAl$_2$Si$_2$-type Zintl phase compounds

Materials Science 2020-11-16 v1

Abstract

We investigate the thermoelectric properties of CaAl2_2Si2_2-type Zintl phase compounds AB2X2AB_2X_2 (AA = Mg, Ca, Sr, Ba, BB = Mg, Zn, Cd, and XX = P, As, Sb) using first principles band calculations within the Boltzmann transport theory assuming the constant relaxation time approximation. We introduce the effective degree of valley degeneracy nTEn_{TE} to focus on the relationship between the thermoelectric properties and the multivalley character of the electronic band structure around the Fermi level. We also introduce a quantity γTE\gamma_{TE}, which takes into account nTEn_{TE} and anisotropy of the valley structure, and it is found that γTE\gamma_{TE} enables us to well understand the overall trend of the material dependence of the power factor. We finally suggest promising thermoelectric materials, e.g. BaMg2_2P2_2 for PF 20μ\sim 20\muW/cmK2^2 and ZT>0.2ZT > 0.2 at 300K and SrZn2_2As2_2 for PF 35μ\sim 35\muW/cmK2^2 and ZT>0.35ZT > 0.35 at 300K assuming a relaxation time of 10 fs and a lattice thermal conductivity value of 2 W/mK.

Keywords

Cite

@article{arxiv.2008.10917,
  title  = {First principles study on the thermoelectric performance of CaAl$_2$Si$_2$-type Zintl phase compounds},
  author = {Hidetomo Usui and Kazuhiko Kuroki},
  journal= {arXiv preprint arXiv:2008.10917},
  year   = {2020}
}

Comments

29 pages, 11 figures