We study the electronic transport coefficients and the thermoelectric figure of merit ZT in n-doped Mg3Sb2 based on density-functional electronic structure and Bloch-Boltzmann transport theory with an energy- and temperature-dependent relaxation time. Both the lattice and electronic thermal conductivities affect the final ZT significantly, hence we include the lattice thermal conductivity calculated ab initio. Where applicable, our results are in good agreement with existing experiments, thanks to the treatment of lattice thermal conductivity and the improved description of electronic scattering. ZT increases monotonically in our T range (300-700 K), reaching a value of 1.6 at 700 K; it peaks as a function of doping at about 3 x 10(19) cm(-3). At this doping, ZT > 1 for T > 500 K.

Theory of thermoelectricity in Mg3Sb2 with an energy- and temperature-dependent relaxation time

Maccioni, Maria Barbara;
2019-01-01

Abstract

We study the electronic transport coefficients and the thermoelectric figure of merit ZT in n-doped Mg3Sb2 based on density-functional electronic structure and Bloch-Boltzmann transport theory with an energy- and temperature-dependent relaxation time. Both the lattice and electronic thermal conductivities affect the final ZT significantly, hence we include the lattice thermal conductivity calculated ab initio. Where applicable, our results are in good agreement with existing experiments, thanks to the treatment of lattice thermal conductivity and the improved description of electronic scattering. ZT increases monotonically in our T range (300-700 K), reaching a value of 1.6 at 700 K; it peaks as a function of doping at about 3 x 10(19) cm(-3). At this doping, ZT > 1 for T > 500 K.
2019
Applied Physics/Condensed Matter/Materials Science encompasses the resources of three related disciplines: Applied Physics, Condensed Matter Physics, and Materials Science. The applied physics resources are concerned with the applications of topics in condensed matter as well as optics, vacuum science, lasers, electronics, cryogenics, magnets and magnetism, acoustical physics and mechanics. The condensed matter physics resources are concerned with the study of the structure and the thermal, mechanical, electrical, magnetic and optical properties of condensed matter. They include superconductivity, surfaces, interfaces, thin films, dielectrics, ferroelectrics and semiconductors. The materials science resources are concerned with the physics and chemistry of materials and include ceramics, composites, alloys, metals and metallurgy, nanotechnology, nuclear materials, adhesion and adhesives. Resources dealing with polymeric materials are listed in the Organic Chemistry/Polymer Science category.
Inglese
31
6
065702
thermoelectricity; electronic structure; thermal conductivity; ab initio theory
4
info:eu-repo/semantics/article
262
Farris, Roberta; Maccioni, Maria Barbara; Filippetti, Alessio; Fiorentini, Vincenzo
1 Contributo su Rivista::1.1 Articolo in rivista
none
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1481563
Citazioni
  • ???jsp.display-item.citation.pmc??? 2
  • Scopus ND
  • ???jsp.display-item.citation.isi??? 17
social impact