Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7956629 | Computational Condensed Matter | 2018 | 14 Pages |
Abstract
Electronic properties of PbTe in its Rock-Salt (B1) phase have been investigated using density functional theory (DFT) as well as the Phonon Band Structure of PbTe using density functional perturbation theory (DFPT). The lattice parameter, bulk modulus and pressure derivative are calculated as 6.608Â Ã
, 36.00Â GPa and 3.39 respectively; The density of states (DOS) has a maximum peak of 3.2 states/eV at â3.00Â eV, the spherical charge distributions between the Pb+2 and Teâ2 ions depict that the system is an ionic compound; From the band structure, a direct band gap of 0.7968Â eV was obtained which agreed well with other calculations. We observed a large splitting value of 2.16Â THZ between the longitudinal optic (LO) and the transverse optic (TO) phonon branches along the Î-point. The vibrational density of states (VDOS) has a maximum peak of 0.185 states/eV at 1.53Â THZ. The values obtained for electronic properties and the phonon band structure PbTe are essentially important for PbTe energy applications such as thermoelectric, solar cells, biological imaging electroluminescent, infrared photodetectors and optoelectronic devices.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
J.O. Akinlami, M.O. Omeike, J.A. Akindiilete, L.O. Abdulfatai,