Electronic Structure, Transport and Phonons of SrAgF (=S, Se, Te): Bulk Superlattice Thermoelectrics
arXiv:1510.00239 · doi:10.1103/PhysRevB.92.045206
Abstract
We report calculations of the electronic structure, vibrational properties and transport for the p-type semiconductors, SrAgF (=S, Se and Te). We find soft phonons with low frequency optical branches intersecting the acoustic modes below 50 , indicative of a material with low thermal conductivity. The bands at and near the valence band maxima are highly two dimensional, which leads to high thermopowers even at high carrier concentrations, which is a combination that suggests good thermoelectric performance. These materials may be regarded as bulk realizations of superlattice thermoelectrics.
References in corpus (7)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- BoltzTraP. A code for calculating band-structure dependent quantities
- Giant Anharmonic Phonon Scattering in PbTe
- Electronic Structure Calculations with the Tran-Blaha Modified Becke-Johnson Density Functional
- High three dimensional thermoelectric performance from low dimensional bands
- SrFeAsF as a parent compound for iron pnictide superconductors
- The electronic-structure origin of the anisotropic thermopower of nanolaminated Ti3SiC2 determined by polarized x-ray spectroscopy and Seebeck measurements