Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4

Abstract Wet-chemical co-precipitation was used to create Co0.5MgxCu0.5−xFe2O4 nano-ferrites (x = 0.0, 0.2, 0.3, and 0.4). XRD, FT-IR, HRTEM, and EDX analyses were used to confirm each sample’s single-phase spinel cubic crystal structure. The crystallite size was calculated from the XRD data and det...

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Main Authors: F. Fakhry, E. Shaheen, H. El-Dosoky, T. M. Meaz, M. Mubark, R. El-Shater
Format: Article
Language:English
Published: Nature Portfolio 2024-11-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-024-74484-4
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author F. Fakhry
E. Shaheen
H. El-Dosoky
T. M. Meaz
M. Mubark
R. El-Shater
author_facet F. Fakhry
E. Shaheen
H. El-Dosoky
T. M. Meaz
M. Mubark
R. El-Shater
author_sort F. Fakhry
collection DOAJ
description Abstract Wet-chemical co-precipitation was used to create Co0.5MgxCu0.5−xFe2O4 nano-ferrites (x = 0.0, 0.2, 0.3, and 0.4). XRD, FT-IR, HRTEM, and EDX analyses were used to confirm each sample’s single-phase spinel cubic crystal structure. The crystallite size was calculated from the XRD data and determined to be between (11.1570 and 16.1457 nm), with a lattice constant between (8.359 to 8.387Å). The two absorption bands found in the FTIR data were utilized to show metal cation and oxygen bond stretching at tetrahedral and octahedral positions, as well as to calculate the elastic moduli. The elemental composition and structural behavior of every sample were examined using FE-SEM and EDS. The magnetic parameters were also estimated based on the VSM data, the contribution of magnetic anisotropy (K), and the magnetic interaction by Neel’s and Y-K-type magnetism modify as the Mg2+ ion substitution increases, thus we must consider how this variation in cation distribution affects all of these factors. As per the ferromagnet theory, ions originating from the magnetic tetrahedral A and octahedral B sites engage in super-exchange interactions with one another. Anti-ferromagnetic alignment occurs as a result (MB-MA). Magnetization occurs as a result.
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spelling doaj-art-a192e3c36596454aa4bcb92296e47bcb2024-12-01T12:18:39ZengNature PortfolioScientific Reports2045-23222024-11-0114111610.1038/s41598-024-74484-4Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4F. Fakhry0E. Shaheen1H. El-Dosoky2T. M. Meaz3M. Mubark4R. El-Shater5Physics Department, Faculty of Science, Tanta UniversityPhysics Department, Faculty of Science, Tanta UniversityChemistry Department, Faculty of Science, Tanta UniversityPhysics Department, Faculty of Science, Tanta UniversityChemistry Department, Faculty of Science, Tanta UniversityPhysics Department, Faculty of Science, Tanta UniversityAbstract Wet-chemical co-precipitation was used to create Co0.5MgxCu0.5−xFe2O4 nano-ferrites (x = 0.0, 0.2, 0.3, and 0.4). XRD, FT-IR, HRTEM, and EDX analyses were used to confirm each sample’s single-phase spinel cubic crystal structure. The crystallite size was calculated from the XRD data and determined to be between (11.1570 and 16.1457 nm), with a lattice constant between (8.359 to 8.387Å). The two absorption bands found in the FTIR data were utilized to show metal cation and oxygen bond stretching at tetrahedral and octahedral positions, as well as to calculate the elastic moduli. The elemental composition and structural behavior of every sample were examined using FE-SEM and EDS. The magnetic parameters were also estimated based on the VSM data, the contribution of magnetic anisotropy (K), and the magnetic interaction by Neel’s and Y-K-type magnetism modify as the Mg2+ ion substitution increases, thus we must consider how this variation in cation distribution affects all of these factors. As per the ferromagnet theory, ions originating from the magnetic tetrahedral A and octahedral B sites engage in super-exchange interactions with one another. Anti-ferromagnetic alignment occurs as a result (MB-MA). Magnetization occurs as a result.https://doi.org/10.1038/s41598-024-74484-4Co-precipitation MethodXRDHRTEMVSMNanoferrite particlesCation distribution
spellingShingle F. Fakhry
E. Shaheen
H. El-Dosoky
T. M. Meaz
M. Mubark
R. El-Shater
Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4
Scientific Reports
Co-precipitation Method
XRD
HRTEM
VSM
Nanoferrite particles
Cation distribution
title Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4
title_full Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4
title_fullStr Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4
title_full_unstemmed Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4
title_short Elastic and magnetic characteristics of nano-spinel ferrite Co0.5 MgxCu0.5−xFe2O4
title_sort elastic and magnetic characteristics of nano spinel ferrite co0 5 mgxcu0 5 xfe2o4
topic Co-precipitation Method
XRD
HRTEM
VSM
Nanoferrite particles
Cation distribution
url https://doi.org/10.1038/s41598-024-74484-4
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