Cargando…

Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)

This paper presents a correlation between experimental and theoretical approaches to study the structural, electronic, magnetic, and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3). The studied compound crystallizes in the Pbnm orthorhombic space group. The calculated DOS using the DFT...

Descripción completa

Detalles Bibliográficos
Autores principales: Mabrouki, A., Messaoudi, O., Mansouri, M., Elgharbi, S., Bardaoui, A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043998/
https://www.ncbi.nlm.nih.gov/pubmed/35498110
http://dx.doi.org/10.1039/d1ra07177g
_version_ 1784695008655310848
author Mabrouki, A.
Messaoudi, O.
Mansouri, M.
Elgharbi, S.
Bardaoui, A.
author_facet Mabrouki, A.
Messaoudi, O.
Mansouri, M.
Elgharbi, S.
Bardaoui, A.
author_sort Mabrouki, A.
collection PubMed
description This paper presents a correlation between experimental and theoretical approaches to study the structural, electronic, magnetic, and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3). The studied compound crystallizes in the Pbnm orthorhombic space group. The calculated DOS using the DFT + U method proves that La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample exhibits semi-metallic behavior, which is preferred in spintronic applications. The calculated PDOS proves that the high hydration among Mn 3d, V 3d and O 2p at the Fermi energy level is responsible for the FM behavior of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3). The magnetic moment has been calculated using DFT results by estimating the valence electron population. The optical properties show high light absorption in the UV region. By using the Bean–Rodbell method, the magnetic phase shows a second-order transition where η = 0.85, and the exchange parameter λ is found to be 1.19 T g(−1) emu(−1). Based on the mean-field theory, the saturation magnetization (M(0)), the Landé factor (g), and the total angular momentum (J) were determined. These parameters were used to simulate magnetization as a function of the magnetic field at different temperatures as well as the variation of the magnetic entropy change ΔS(M) (T).
format Online
Article
Text
id pubmed-9043998
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90439982022-04-28 Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT) Mabrouki, A. Messaoudi, O. Mansouri, M. Elgharbi, S. Bardaoui, A. RSC Adv Chemistry This paper presents a correlation between experimental and theoretical approaches to study the structural, electronic, magnetic, and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3). The studied compound crystallizes in the Pbnm orthorhombic space group. The calculated DOS using the DFT + U method proves that La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample exhibits semi-metallic behavior, which is preferred in spintronic applications. The calculated PDOS proves that the high hydration among Mn 3d, V 3d and O 2p at the Fermi energy level is responsible for the FM behavior of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3). The magnetic moment has been calculated using DFT results by estimating the valence electron population. The optical properties show high light absorption in the UV region. By using the Bean–Rodbell method, the magnetic phase shows a second-order transition where η = 0.85, and the exchange parameter λ is found to be 1.19 T g(−1) emu(−1). Based on the mean-field theory, the saturation magnetization (M(0)), the Landé factor (g), and the total angular momentum (J) were determined. These parameters were used to simulate magnetization as a function of the magnetic field at different temperatures as well as the variation of the magnetic entropy change ΔS(M) (T). The Royal Society of Chemistry 2021-11-24 /pmc/articles/PMC9043998/ /pubmed/35498110 http://dx.doi.org/10.1039/d1ra07177g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mabrouki, A.
Messaoudi, O.
Mansouri, M.
Elgharbi, S.
Bardaoui, A.
Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)
title Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)
title_full Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)
title_fullStr Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)
title_full_unstemmed Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)
title_short Study of the structural, electronic, magnetic and magnetocaloric properties of La(0.5)Ca(0.5)Mn(0.9)V(0.1)O(3) sample: first-principles calculation (DFT–MFT)
title_sort study of the structural, electronic, magnetic and magnetocaloric properties of la(0.5)ca(0.5)mn(0.9)v(0.1)o(3) sample: first-principles calculation (dft–mft)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043998/
https://www.ncbi.nlm.nih.gov/pubmed/35498110
http://dx.doi.org/10.1039/d1ra07177g
work_keys_str_mv AT mabroukia studyofthestructuralelectronicmagneticandmagnetocaloricpropertiesofla05ca05mn09v01o3samplefirstprinciplescalculationdftmft
AT messaoudio studyofthestructuralelectronicmagneticandmagnetocaloricpropertiesofla05ca05mn09v01o3samplefirstprinciplescalculationdftmft
AT mansourim studyofthestructuralelectronicmagneticandmagnetocaloricpropertiesofla05ca05mn09v01o3samplefirstprinciplescalculationdftmft
AT elgharbis studyofthestructuralelectronicmagneticandmagnetocaloricpropertiesofla05ca05mn09v01o3samplefirstprinciplescalculationdftmft
AT bardaouia studyofthestructuralelectronicmagneticandmagnetocaloricpropertiesofla05ca05mn09v01o3samplefirstprinciplescalculationdftmft