Back to Search Start Over

Enhanced thermoelectric properties of ASbO3 due to decreased band gap through modified becke johnson potential scheme

Authors :
Safdar Hussain
Souraya Goumri-Said
Muhammad Irfan
Manzoor Ahmad
Mohammad Sohail
Saleem Ayaz Khan
Sikander Azam
Source :
Journal of Physics and Chemistry of Solids. 119:85-93
Publication Year :
2018
Publisher :
Elsevier BV, 2018.

Abstract

Using density functional theory (DFT) calculations, we have explored the effect of Ag and Cs atoms on the electronic transport properties of ASbO 3 (A = K, Ag and Cs). We employed first principle calculations for investigation of electronic, optical and thermoelectric properties of ASbO 3 compounds. The exchange and correlation potential (E XC ) was treated by the modified Becke Johnson functional (mBJ). The optimized lattice constants and internal cell parameters were in agreement with the available experimental data. The self-consistence density of state and band-structure calculations show that Cs- d and Ag- d states remains in valence band and dominate below the Fermi level, while Sb- s/p states mainly contribute in conduction band. When Ag and Cs for K substitution take place, there is a gradual hybridization of Cs- d and Ag- d states results. Optical spectra show the main absorption peak in between 8.0 and 13.0 eV depends on the substituent nature and could be due to transition from hybridized band (Sb- d and Sb- s ), below E F to free Ag and Cs- s/p/d states. Frequency-dependent refractive index, n(ω), and the extinction coefficient, k(ω), of ASbO 3 were also calculated for the radiation upto 40 eV. We combined the outputs of DFT to transport theory based on Boltzmann equation to calculate the potential use of the ASbO 3 as thermoelectrics. The change of the alkaline element affected both of electrical conductivity, Seebeck coefficient and thermal conductivity.

Details

ISSN :
00223697
Volume :
119
Database :
OpenAIRE
Journal :
Journal of Physics and Chemistry of Solids
Accession number :
edsair.doi...........bc14d9a3818a4449324bdf15eeca7d28
Full Text :
https://doi.org/10.1016/j.jpcs.2018.03.010