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Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach

Fluoro-perovskites compounds based on the Tl element TlMF(3) (M = Au, Ga) were examined computationally, and their different aspects, studied utilizing TB-mBJ potential approximations, can be used for the generation of energy because of their ever-increasing power conversion efficiency. Birch Murnag...

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Autores principales: Khan, Hukam, Sohail, Mohammad, Arif, Muhammad Shoaib, Abodayeh, Kamaleldin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864480/
https://www.ncbi.nlm.nih.gov/pubmed/36676424
http://dx.doi.org/10.3390/ma16020686
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author Khan, Hukam
Sohail, Mohammad
Arif, Muhammad Shoaib
Abodayeh, Kamaleldin
author_facet Khan, Hukam
Sohail, Mohammad
Arif, Muhammad Shoaib
Abodayeh, Kamaleldin
author_sort Khan, Hukam
collection PubMed
description Fluoro-perovskites compounds based on the Tl element TlMF(3) (M = Au, Ga) were examined computationally, and their different aspects, studied utilizing TB-mBJ potential approximations, can be used for the generation of energy because of their ever-increasing power conversion efficiency. Birch Murnaghan’s graph and tolerance factor show that these composites are structurally cubic and stable. The optimum volume of the compounds corresponding to the optimum energies and the optimized lattice constants were computed. The algorithm IRelast was used to predict the elastic information, and these results demonstrated that the presented compounds are stable mechanically and show anisotropic and ductile properties. TlAuF(3) and TlGaF(3) have an indirect band energy gap at (M-X) positions, with a forbidden energy gap of −0.55 eV for TlAuF(3) and 0.46 eV for TlGaF(3). The compounds show a metallic nature due to a small indirect band gap. Different component states corresponding to the upper and lower bands of the Fermi energy level are influenced by the total density in the different states and the density in various directions (TDOS & PDOS). These composites exhibit strong absorption, conductivity, and reflective coefficients at higher energy series together with a low refractive index, given by an inquiry into optical properties. The applications of these composites are thought to be good for conduction purposes in industries due to the indirect band gap. For the first time, computational analysis of these novel compounds offers a thorough understanding of their many characteristics.
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spelling pubmed-98644802023-01-22 Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach Khan, Hukam Sohail, Mohammad Arif, Muhammad Shoaib Abodayeh, Kamaleldin Materials (Basel) Article Fluoro-perovskites compounds based on the Tl element TlMF(3) (M = Au, Ga) were examined computationally, and their different aspects, studied utilizing TB-mBJ potential approximations, can be used for the generation of energy because of their ever-increasing power conversion efficiency. Birch Murnaghan’s graph and tolerance factor show that these composites are structurally cubic and stable. The optimum volume of the compounds corresponding to the optimum energies and the optimized lattice constants were computed. The algorithm IRelast was used to predict the elastic information, and these results demonstrated that the presented compounds are stable mechanically and show anisotropic and ductile properties. TlAuF(3) and TlGaF(3) have an indirect band energy gap at (M-X) positions, with a forbidden energy gap of −0.55 eV for TlAuF(3) and 0.46 eV for TlGaF(3). The compounds show a metallic nature due to a small indirect band gap. Different component states corresponding to the upper and lower bands of the Fermi energy level are influenced by the total density in the different states and the density in various directions (TDOS & PDOS). These composites exhibit strong absorption, conductivity, and reflective coefficients at higher energy series together with a low refractive index, given by an inquiry into optical properties. The applications of these composites are thought to be good for conduction purposes in industries due to the indirect band gap. For the first time, computational analysis of these novel compounds offers a thorough understanding of their many characteristics. MDPI 2023-01-10 /pmc/articles/PMC9864480/ /pubmed/36676424 http://dx.doi.org/10.3390/ma16020686 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khan, Hukam
Sohail, Mohammad
Arif, Muhammad Shoaib
Abodayeh, Kamaleldin
Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach
title Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach
title_full Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach
title_fullStr Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach
title_full_unstemmed Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach
title_short Insight into the Physical Properties of Fluoro-Perovskites Compounds of Tl-Based TlMF(3) (M = Au, Ga) Compounds Studied for Energy Generation Utilizing the TB-MBJ Potential Approximation Approach
title_sort insight into the physical properties of fluoro-perovskites compounds of tl-based tlmf(3) (m = au, ga) compounds studied for energy generation utilizing the tb-mbj potential approximation approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864480/
https://www.ncbi.nlm.nih.gov/pubmed/36676424
http://dx.doi.org/10.3390/ma16020686
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