Cargando…

Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications

The main goal of modern manufacturing is to create products that are affordable, eco-friendly, and energy-efficient. With a focus on HgCrO(3), this study sought to discover molecules that meet these requirements. The structural, electrical, thermodynamic, and transport properties of the material wer...

Descripción completa

Detalles Bibliográficos
Autores principales: Khan, Junaid, Al-Anazy, Murefah mana, Yousef, El Sayed, D, Datta, Sharma, Ramesh, Moayad, A. J. A.
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/PMC10653202/
https://www.ncbi.nlm.nih.gov/pubmed/38019982
http://dx.doi.org/10.1039/d3ra06392e
_version_ 1785147750704218112
author Khan, Junaid
Al-Anazy, Murefah mana
Yousef, El Sayed
D, Datta
Sharma, Ramesh
Moayad, A. J. A.
author_facet Khan, Junaid
Al-Anazy, Murefah mana
Yousef, El Sayed
D, Datta
Sharma, Ramesh
Moayad, A. J. A.
author_sort Khan, Junaid
collection PubMed
description The main goal of modern manufacturing is to create products that are affordable, eco-friendly, and energy-efficient. With a focus on HgCrO(3), this study sought to discover molecules that meet these requirements. The structural, electrical, thermodynamic, and transport properties of the material were investigated using Wien2K, a full-potential, linearized augmented plane wave program (FP LAPW). Utilizing the generalised gradient approximation (GGA) and lattice constants that have previously produced excellent theoretical and practical findings, structural optimization was carried out. Calculated HgCrO(3) magnetic characteristics show that the Cr and Hg atoms are the main contributors to magnetism. Over a temperature range of 0–1200 K and a pressure range of 0–196 GPa, thermodynamic characteristics were evaluated. The thermoelectric properties of HgCrO(3) were evaluated using the Boltzmann transport method provided by the BoltzTrap program. This analysis revealed that at room temperature, the figures of merit (ZT) values for HgCrO(3) were nearly equal to one. A ZT value close to one indicates that a material has excellent thermoelectric properties and can efficiently convert heat into electricity or vice versa. This investigation highlights the promising thermoelectric capabilities of HgCrO(3), which could contribute to more sustainable and energy-efficient technologies in the future.
format Online
Article
Text
id pubmed-10653202
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-106532022023-11-16 Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications Khan, Junaid Al-Anazy, Murefah mana Yousef, El Sayed D, Datta Sharma, Ramesh Moayad, A. J. A. RSC Adv Chemistry The main goal of modern manufacturing is to create products that are affordable, eco-friendly, and energy-efficient. With a focus on HgCrO(3), this study sought to discover molecules that meet these requirements. The structural, electrical, thermodynamic, and transport properties of the material were investigated using Wien2K, a full-potential, linearized augmented plane wave program (FP LAPW). Utilizing the generalised gradient approximation (GGA) and lattice constants that have previously produced excellent theoretical and practical findings, structural optimization was carried out. Calculated HgCrO(3) magnetic characteristics show that the Cr and Hg atoms are the main contributors to magnetism. Over a temperature range of 0–1200 K and a pressure range of 0–196 GPa, thermodynamic characteristics were evaluated. The thermoelectric properties of HgCrO(3) were evaluated using the Boltzmann transport method provided by the BoltzTrap program. This analysis revealed that at room temperature, the figures of merit (ZT) values for HgCrO(3) were nearly equal to one. A ZT value close to one indicates that a material has excellent thermoelectric properties and can efficiently convert heat into electricity or vice versa. This investigation highlights the promising thermoelectric capabilities of HgCrO(3), which could contribute to more sustainable and energy-efficient technologies in the future. The Royal Society of Chemistry 2023-11-16 /pmc/articles/PMC10653202/ /pubmed/38019982 http://dx.doi.org/10.1039/d3ra06392e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Khan, Junaid
Al-Anazy, Murefah mana
Yousef, El Sayed
D, Datta
Sharma, Ramesh
Moayad, A. J. A.
Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
title Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
title_full Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
title_fullStr Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
title_full_unstemmed Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
title_short Comprehensive analysis of novel cubic HgCrO(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
title_sort comprehensive analysis of novel cubic hgcro(3) perovskite: a first principles, structural, thermodynamic, and magnetic properties study for spintronic applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10653202/
https://www.ncbi.nlm.nih.gov/pubmed/38019982
http://dx.doi.org/10.1039/d3ra06392e
work_keys_str_mv AT khanjunaid comprehensiveanalysisofnovelcubichgcro3perovskiteafirstprinciplesstructuralthermodynamicandmagneticpropertiesstudyforspintronicapplications
AT alanazymurefahmana comprehensiveanalysisofnovelcubichgcro3perovskiteafirstprinciplesstructuralthermodynamicandmagneticpropertiesstudyforspintronicapplications
AT yousefelsayed comprehensiveanalysisofnovelcubichgcro3perovskiteafirstprinciplesstructuralthermodynamicandmagneticpropertiesstudyforspintronicapplications
AT ddatta comprehensiveanalysisofnovelcubichgcro3perovskiteafirstprinciplesstructuralthermodynamicandmagneticpropertiesstudyforspintronicapplications
AT sharmaramesh comprehensiveanalysisofnovelcubichgcro3perovskiteafirstprinciplesstructuralthermodynamicandmagneticpropertiesstudyforspintronicapplications
AT moayadaja comprehensiveanalysisofnovelcubichgcro3perovskiteafirstprinciplesstructuralthermodynamicandmagneticpropertiesstudyforspintronicapplications