A Theoretical Insight into the Physical Characteristics of Double Perovskite Rb2TlInBr6 for Renewable Energy Applications

Author:

Qaid Saif M. H.1,Ain Quratul2,Akhtar Masoofa3,Murtaza Hudabia23,Ghaithan Hamid M.1,Ahmed Abdullah Ahmed Ali4,Munir Junaid3ORCID

Affiliation:

1. Department of Physics & Astronomy College of Sciences King Saud University P.O. Box 2455 Riyadh 11451 Saudi Arabia

2. Department of Physics University of Management and Technology Lahore 54770 Pakistan

3. Department of Physics Riphah International University Lahore 54000 Pakistan

4. Center for Hybrid Nanostructures (CHyN) and Fachbereich Physik Universität Hamburg 20146 Hamburg Germany

Abstract

AbstractMetal halide perovskites have gained prominence in optoelectronics recently, thanks to their unique optical and electrical properties, along with their adaptable morphologies. The current work reports the electronic, structural, mechanical, optical, and thermoelectric traits of Rb2TlInBr6 for the very first time. The confirmation of thermodynamic stability is evidenced by the negative value of the formation energy, while structural stability is established by calculating values for the tolerance factor and octahedral tilting. Elastic constants (Cij) and mechanical attributes are evaluated to assess perovskites’ ability to resist external strains. Electronic band structures computed with GGA and mBJ potentials depict a semiconducting nature containing indirect bandgap of 1.8 and 2.42 eV, respectively. Optical characteristics of Rb2TlInBr6 ensure that it can be used effectively for optoelectronic applications. An insight into the thermoelectric characteristic is assessed through BoltzTraP code. The electrical conductivity and ZT reveal the ability of Rb2TlInBr6 to be utilized in green energy devices.

Funder

King Saud University

Publisher

Wiley

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