Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite

Chemical substitution is one of the methods to modify magnetic and structural properties of magnetic materials. Substitution of cobalt ions in magnetite lattice has been done via co-precipitation method to investigate the effect of cobalt substitution in altering the structural and magnetic properti...

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Main Authors: Soleimani, Hassan, Ahmad Latiff, Noor Rasyada, Mohd Zaid, Hasnah, Yahya, Noorhana, Sadrolhosseini, Amir Reza, Adil, Muhammad
Format: Conference or Workshop Item
Language:English
Published: AIP Publishing 2016
Online Access:http://psasir.upm.edu.my/id/eprint/57623/1/Influence%20of%20cobalt%20substitution%20on%20the%20structural%20and%20magnetic%20properties%20of%20cobalt%20substituted%20magnetite.pdf
http://psasir.upm.edu.my/id/eprint/57623/
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Institution: Universiti Putra Malaysia
Language: English
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spelling my.upm.eprints.576232017-10-24T08:05:29Z http://psasir.upm.edu.my/id/eprint/57623/ Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite Soleimani, Hassan Ahmad Latiff, Noor Rasyada Mohd Zaid, Hasnah Yahya, Noorhana Sadrolhosseini, Amir Reza Adil, Muhammad Chemical substitution is one of the methods to modify magnetic and structural properties of magnetic materials. Substitution of cobalt ions in magnetite lattice has been done via co-precipitation method to investigate the effect of cobalt substitution in altering the structural and magnetic properties of Co(x)Fe(1-x)Fe2O4. Changes in the lattice constant have been observed with increase in cobalt concentration though particle size varied insignificantly. Qualitative study of the cation occupancy at tetrahedral and octahedral sites was observed at wavenumbers ranging from 600 to 400 cm-1, known as the characteristic range for ferrites. Preferential occupancy of cobalt ions into tetrahedral sites was evident by the changes in the intensity of transmitted FTIR signal as the wavenumbers shifted towards longer wavenumber with increasing cobalt concentration. Meanwhile for saturation magnetization, only small changes is observed when Fe2+ is completely substituted by Co2+. Increment of 21.3% in the saturation magnetization of 1.0Co was achieved in comparison with pure magnetite, therefore proves the role of cation substitution in the enhancement of saturation magnetization. AIP Publishing 2016 Conference or Workshop Item PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/57623/1/Influence%20of%20cobalt%20substitution%20on%20the%20structural%20and%20magnetic%20properties%20of%20cobalt%20substituted%20magnetite.pdf Soleimani, Hassan and Ahmad Latiff, Noor Rasyada and Mohd Zaid, Hasnah and Yahya, Noorhana and Sadrolhosseini, Amir Reza and Adil, Muhammad (2016) Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite. In: 4th International Conference of Fundamental and Applied Sciences (ICFAS 2016), 15-17 Aug. 2016, Kuala Lumpur Convention Centre, Kuala Lumpur. (pp. 1-6). 10.1063/1.4968106
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Chemical substitution is one of the methods to modify magnetic and structural properties of magnetic materials. Substitution of cobalt ions in magnetite lattice has been done via co-precipitation method to investigate the effect of cobalt substitution in altering the structural and magnetic properties of Co(x)Fe(1-x)Fe2O4. Changes in the lattice constant have been observed with increase in cobalt concentration though particle size varied insignificantly. Qualitative study of the cation occupancy at tetrahedral and octahedral sites was observed at wavenumbers ranging from 600 to 400 cm-1, known as the characteristic range for ferrites. Preferential occupancy of cobalt ions into tetrahedral sites was evident by the changes in the intensity of transmitted FTIR signal as the wavenumbers shifted towards longer wavenumber with increasing cobalt concentration. Meanwhile for saturation magnetization, only small changes is observed when Fe2+ is completely substituted by Co2+. Increment of 21.3% in the saturation magnetization of 1.0Co was achieved in comparison with pure magnetite, therefore proves the role of cation substitution in the enhancement of saturation magnetization.
format Conference or Workshop Item
author Soleimani, Hassan
Ahmad Latiff, Noor Rasyada
Mohd Zaid, Hasnah
Yahya, Noorhana
Sadrolhosseini, Amir Reza
Adil, Muhammad
spellingShingle Soleimani, Hassan
Ahmad Latiff, Noor Rasyada
Mohd Zaid, Hasnah
Yahya, Noorhana
Sadrolhosseini, Amir Reza
Adil, Muhammad
Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
author_facet Soleimani, Hassan
Ahmad Latiff, Noor Rasyada
Mohd Zaid, Hasnah
Yahya, Noorhana
Sadrolhosseini, Amir Reza
Adil, Muhammad
author_sort Soleimani, Hassan
title Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
title_short Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
title_full Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
title_fullStr Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
title_full_unstemmed Influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
title_sort influence of cobalt substitution on the structural and magnetic properties of cobalt substituted magnetite
publisher AIP Publishing
publishDate 2016
url http://psasir.upm.edu.my/id/eprint/57623/1/Influence%20of%20cobalt%20substitution%20on%20the%20structural%20and%20magnetic%20properties%20of%20cobalt%20substituted%20magnetite.pdf
http://psasir.upm.edu.my/id/eprint/57623/
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