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Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures

This article reports the dependence of exchange bias (EB) effect on interparticle interactions in nanocrystalline Co/CoO core/shell structures, synthesized using the conventional sol-gel technique. Analysis via powder X-Ray diffraction (PXRD) studies and transmission electron microscope (TEM) images...

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Autores principales: Goswami, Suchandra, Gupta, Pushpendra, Nayak, Sagarika, Bedanta, Subhankar, Iglesias, Òscar, Chakraborty, Manashi, De, Debajyoti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502722/
https://www.ncbi.nlm.nih.gov/pubmed/36144947
http://dx.doi.org/10.3390/nano12183159
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author Goswami, Suchandra
Gupta, Pushpendra
Nayak, Sagarika
Bedanta, Subhankar
Iglesias, Òscar
Chakraborty, Manashi
De, Debajyoti
author_facet Goswami, Suchandra
Gupta, Pushpendra
Nayak, Sagarika
Bedanta, Subhankar
Iglesias, Òscar
Chakraborty, Manashi
De, Debajyoti
author_sort Goswami, Suchandra
collection PubMed
description This article reports the dependence of exchange bias (EB) effect on interparticle interactions in nanocrystalline Co/CoO core/shell structures, synthesized using the conventional sol-gel technique. Analysis via powder X-Ray diffraction (PXRD) studies and transmission electron microscope (TEM) images confirm the presence of crystalline phases of core/shell Co/CoO with average particle size ≈ 18 nm. Volume fraction ([Formula: see text]) is varied (from 20% to 1%) by the introduction of a stoichiometric amount of non-magnetic amorphous silica matrix (SiO [Formula: see text]) which leads to a change in interparticle interaction (separation). The influence of exchange and dipolar interactions on the EB effect, caused by the variation in interparticle interaction (separation) is studied for a series of Co/CoO core/shell nanoparticle systems. Studies of thermal variation of magnetization ([Formula: see text]) and magnetic hysteresis loops ([Formula: see text]) for the series point towards strong dependence of magnetic properties on dipolar interaction in concentrated assemblies whereas individual nanoparticle response is dominant in isolated nanoparticle systems. The analysis of the EB effect reveals a monotonic increase of coercivity ([Formula: see text]) and EB field ([Formula: see text]) with increasing volume fraction. When the nanoparticles are close enough and the interparticle interaction is significant, collective behavior leads to an increase in the effective antiferromagnetic (AFM) CoO shell thickness which results in high [Formula: see text] and [Formula: see text]. Moreover, in concentrated assemblies, the dipolar field superposes to the local exchange field and enhances the EB effect contributing as an additional source of unidirectional anisotropy.
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spelling pubmed-95027222022-09-24 Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures Goswami, Suchandra Gupta, Pushpendra Nayak, Sagarika Bedanta, Subhankar Iglesias, Òscar Chakraborty, Manashi De, Debajyoti Nanomaterials (Basel) Article This article reports the dependence of exchange bias (EB) effect on interparticle interactions in nanocrystalline Co/CoO core/shell structures, synthesized using the conventional sol-gel technique. Analysis via powder X-Ray diffraction (PXRD) studies and transmission electron microscope (TEM) images confirm the presence of crystalline phases of core/shell Co/CoO with average particle size ≈ 18 nm. Volume fraction ([Formula: see text]) is varied (from 20% to 1%) by the introduction of a stoichiometric amount of non-magnetic amorphous silica matrix (SiO [Formula: see text]) which leads to a change in interparticle interaction (separation). The influence of exchange and dipolar interactions on the EB effect, caused by the variation in interparticle interaction (separation) is studied for a series of Co/CoO core/shell nanoparticle systems. Studies of thermal variation of magnetization ([Formula: see text]) and magnetic hysteresis loops ([Formula: see text]) for the series point towards strong dependence of magnetic properties on dipolar interaction in concentrated assemblies whereas individual nanoparticle response is dominant in isolated nanoparticle systems. The analysis of the EB effect reveals a monotonic increase of coercivity ([Formula: see text]) and EB field ([Formula: see text]) with increasing volume fraction. When the nanoparticles are close enough and the interparticle interaction is significant, collective behavior leads to an increase in the effective antiferromagnetic (AFM) CoO shell thickness which results in high [Formula: see text] and [Formula: see text]. Moreover, in concentrated assemblies, the dipolar field superposes to the local exchange field and enhances the EB effect contributing as an additional source of unidirectional anisotropy. MDPI 2022-09-12 /pmc/articles/PMC9502722/ /pubmed/36144947 http://dx.doi.org/10.3390/nano12183159 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Goswami, Suchandra
Gupta, Pushpendra
Nayak, Sagarika
Bedanta, Subhankar
Iglesias, Òscar
Chakraborty, Manashi
De, Debajyoti
Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures
title Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures
title_full Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures
title_fullStr Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures
title_full_unstemmed Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures
title_short Dependence of Exchange Bias on Interparticle Interactions in Co/CoO Core/Shell Nanostructures
title_sort dependence of exchange bias on interparticle interactions in co/coo core/shell nanostructures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502722/
https://www.ncbi.nlm.nih.gov/pubmed/36144947
http://dx.doi.org/10.3390/nano12183159
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