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Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT

We investigated the physical behavior of SrMO(3) (M = Hf and Pt) compounds, which are strontium-based oxide perovskites. We utilized the WIEN2k software to simulate and investigate their physical properties. The structural stability of SrHfO(3) and SrPtO(3) was verified using the Birch–Murnaghan equ...

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Autores principales: Pasha, Amjad Ali, Iqbal, Musawer, Khan, Hukam, Sohail, Mohammad, Rahman, Nasir, Khan, Rajwali, Khan, Abid Ali, Alsalmi, Omar H., Abduvalieva, Dilsora, El Jery, Atef, Adrdery, Mouataz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10472505/
https://www.ncbi.nlm.nih.gov/pubmed/37664211
http://dx.doi.org/10.1039/d3ra05059a
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author Pasha, Amjad Ali
Iqbal, Musawer
Khan, Hukam
Sohail, Mohammad
Rahman, Nasir
Khan, Rajwali
Khan, Abid Ali
Alsalmi, Omar H.
Abduvalieva, Dilsora
El Jery, Atef
Adrdery, Mouataz
author_facet Pasha, Amjad Ali
Iqbal, Musawer
Khan, Hukam
Sohail, Mohammad
Rahman, Nasir
Khan, Rajwali
Khan, Abid Ali
Alsalmi, Omar H.
Abduvalieva, Dilsora
El Jery, Atef
Adrdery, Mouataz
author_sort Pasha, Amjad Ali
collection PubMed
description We investigated the physical behavior of SrMO(3) (M = Hf and Pt) compounds, which are strontium-based oxide perovskites. We utilized the WIEN2k software to simulate and investigate their physical properties. The structural stability of SrHfO(3) and SrPtO(3) was verified using the Birch–Murnaghan equation of states for optimization. We also checked the elastic stability through the computation of elastic constants using the IRelast software. Our results indicate the stability of these compounds and showed their anisotropic, ductility, scratch-resistive, and plastic strain-resistant characteristics. Using the TB-mBJ potential approach, we determined that SrHfO(3) is an insulator, whereas SrPtO(3) is a metal in nature. The density of states computations was used to find the band structure as well as the contribution of different electronic states. Optical property research was conducted using the band gap energies of these substances. Our findings suggest that these crystals have low energy absorption and reflectivity of up to 65%, making them suitable for use in high-frequency UV devices. Specifically, SrHfO(3) is more transparent before the energy point 2.80 eV, while the compound SrPtO(3) after 6.50 eV to 12.0 eV and SrHfO(3) from 12.0 and 14.0 eV. This study represents the first DFT-based investigation of these discussed crystals according to the best of our knowledge.
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spelling pubmed-104725052023-09-02 Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT Pasha, Amjad Ali Iqbal, Musawer Khan, Hukam Sohail, Mohammad Rahman, Nasir Khan, Rajwali Khan, Abid Ali Alsalmi, Omar H. Abduvalieva, Dilsora El Jery, Atef Adrdery, Mouataz RSC Adv Chemistry We investigated the physical behavior of SrMO(3) (M = Hf and Pt) compounds, which are strontium-based oxide perovskites. We utilized the WIEN2k software to simulate and investigate their physical properties. The structural stability of SrHfO(3) and SrPtO(3) was verified using the Birch–Murnaghan equation of states for optimization. We also checked the elastic stability through the computation of elastic constants using the IRelast software. Our results indicate the stability of these compounds and showed their anisotropic, ductility, scratch-resistive, and plastic strain-resistant characteristics. Using the TB-mBJ potential approach, we determined that SrHfO(3) is an insulator, whereas SrPtO(3) is a metal in nature. The density of states computations was used to find the band structure as well as the contribution of different electronic states. Optical property research was conducted using the band gap energies of these substances. Our findings suggest that these crystals have low energy absorption and reflectivity of up to 65%, making them suitable for use in high-frequency UV devices. Specifically, SrHfO(3) is more transparent before the energy point 2.80 eV, while the compound SrPtO(3) after 6.50 eV to 12.0 eV and SrHfO(3) from 12.0 and 14.0 eV. This study represents the first DFT-based investigation of these discussed crystals according to the best of our knowledge. The Royal Society of Chemistry 2023-09-01 /pmc/articles/PMC10472505/ /pubmed/37664211 http://dx.doi.org/10.1039/d3ra05059a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Pasha, Amjad Ali
Iqbal, Musawer
Khan, Hukam
Sohail, Mohammad
Rahman, Nasir
Khan, Rajwali
Khan, Abid Ali
Alsalmi, Omar H.
Abduvalieva, Dilsora
El Jery, Atef
Adrdery, Mouataz
Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT
title Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT
title_full Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT
title_fullStr Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT
title_full_unstemmed Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT
title_short Theoretical study on the physical properties of synthesized SrMO(3) (M = Hf and Pt) oxide perovskites using DFT
title_sort theoretical study on the physical properties of synthesized srmo(3) (m = hf and pt) oxide perovskites using dft
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10472505/
https://www.ncbi.nlm.nih.gov/pubmed/37664211
http://dx.doi.org/10.1039/d3ra05059a
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