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Ab-initio investigation of AGeO3 (A = Ca, Sr) compounds via Tran-Blaha-modified Becke-Johnson exchange potential

  • Rasul Bakhsh Behram
  • , M. A. Iqbal
  • , Muhammad Rashid*
  • , M. Atif Sattar
  • , Asif Mahmood
  • , Shahid M. Ramay
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

We employ ab-initio calculations to analyze the mechanical, electronic, optical and also thermoelectric properties associated with AGeO3 (A = Ca, Sr) compounds. The full-potential linearized augmented plane wave (FP-LAPW) technique in the generalized gradient approximation (GGA-PBEsol) and the lately designed TranBlaha-modified BeckeJohnson exchange potential are utilized to examine the mechanical and optoelectronic properties respectively. To explore the thermoelectric quality, we use the semi-classical Boltzmann transport theory. The particular structural stabilities regarding AGeO3 (A = Ca, Sr) materials are validated simply by computations from the elastic constants. The energy band structural framework and the density of states are displayed to indicate indirect bandgap under ambient conditions. The particular computed optical attributes that reveal prospective optoelectronic applications are usually elucidated simply by studying ϵ1 (0) and also Eg, which can be connected by means of Penn's design. The optical details uncover the actual suitability to power ranging products. Finally, the BoltzTraP code is executed to analyze the actual thermoelectric properties, which usually presents that the increase of internal temperatures can enhance the electric conductivity, thermal conductivity and also the power factor, whilst Seebeck coefficient decreases. Therefore, the studied materials will also be ideal for thermoelectric products to understand helpful option for alternative energy resources.

Original languageEnglish
Article number116103
JournalChinese Physics B
Volume26
Issue number11
DOIs
StatePublished - Nov 2017

Bibliographical note

Publisher Copyright:
© 2017 Chinese Physical Society and IOP Publishing Ltd.

Keywords

  • elastic properties
  • optical properties
  • semiconductors
  • thermal properties

ASJC Scopus subject areas

  • General Physics and Astronomy

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