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Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)

The results of complex studies of structural-phase transformations and magneto-optical properties of nanocomposites (CoFeZr)(x) (MgF(2))(100−x) depending on the metal alloy content in the dielectric matrix are presented. Nanocomposites were deposited by ion-beam sputtering onto glass and glass-ceram...

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Autores principales: Ganshina, Elena Alexandrovna, Garshin, Vladimir Valentinovich, Pripechenkov, Ilya Mikhailovich, Ivkov, Sergey Alexandrovich, Sitnikov, Alexander Victorovich, Domashevskaya, Evelina Pavlovna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8307719/
https://www.ncbi.nlm.nih.gov/pubmed/34202880
http://dx.doi.org/10.3390/nano11071666
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author Ganshina, Elena Alexandrovna
Garshin, Vladimir Valentinovich
Pripechenkov, Ilya Mikhailovich
Ivkov, Sergey Alexandrovich
Sitnikov, Alexander Victorovich
Domashevskaya, Evelina Pavlovna
author_facet Ganshina, Elena Alexandrovna
Garshin, Vladimir Valentinovich
Pripechenkov, Ilya Mikhailovich
Ivkov, Sergey Alexandrovich
Sitnikov, Alexander Victorovich
Domashevskaya, Evelina Pavlovna
author_sort Ganshina, Elena Alexandrovna
collection PubMed
description The results of complex studies of structural-phase transformations and magneto-optical properties of nanocomposites (CoFeZr)(x) (MgF(2))(100−x) depending on the metal alloy content in the dielectric matrix are presented. Nanocomposites were deposited by ion-beam sputtering onto glass and glass-ceramic substrate. By studying the spectral and field dependences of the transversal Kerr effect (TKE), it was found that the transition of nanocomposites from superparamagnetic to the ferromagnetic state occurs in the region of x(fm)~30 at%, that corresponds to the onset the formation of ferromagnetic nanocrystals CoFeZr with hexagonal syngony in amorphous dielectric matrix of MgF(2). With an increase of concentrations of the metal alloy for x > x(fm), the features associated with structural transitions in magnetic granules are revealed in the TKE spectra. Comparison of the spectral and concentration dependences of TKE for nanocomposites on the glass and glass-ceramics substrates showed that the strongest differences occur in the region of the phase structural transition of CoFeZr nanocrystals from a hexagonal to a body-centered cubic structure at x = 38 at.% on the glass substrates and at x = 46 at.% on glass-ceramics substrates, due to different diffusion rates and different size of metal nanocrystals on amorphous glass substrates and more rough polycrystalline glass-ceramics substrates.
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spelling pubmed-83077192021-07-25 Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x) Ganshina, Elena Alexandrovna Garshin, Vladimir Valentinovich Pripechenkov, Ilya Mikhailovich Ivkov, Sergey Alexandrovich Sitnikov, Alexander Victorovich Domashevskaya, Evelina Pavlovna Nanomaterials (Basel) Article The results of complex studies of structural-phase transformations and magneto-optical properties of nanocomposites (CoFeZr)(x) (MgF(2))(100−x) depending on the metal alloy content in the dielectric matrix are presented. Nanocomposites were deposited by ion-beam sputtering onto glass and glass-ceramic substrate. By studying the spectral and field dependences of the transversal Kerr effect (TKE), it was found that the transition of nanocomposites from superparamagnetic to the ferromagnetic state occurs in the region of x(fm)~30 at%, that corresponds to the onset the formation of ferromagnetic nanocrystals CoFeZr with hexagonal syngony in amorphous dielectric matrix of MgF(2). With an increase of concentrations of the metal alloy for x > x(fm), the features associated with structural transitions in magnetic granules are revealed in the TKE spectra. Comparison of the spectral and concentration dependences of TKE for nanocomposites on the glass and glass-ceramics substrates showed that the strongest differences occur in the region of the phase structural transition of CoFeZr nanocrystals from a hexagonal to a body-centered cubic structure at x = 38 at.% on the glass substrates and at x = 46 at.% on glass-ceramics substrates, due to different diffusion rates and different size of metal nanocrystals on amorphous glass substrates and more rough polycrystalline glass-ceramics substrates. MDPI 2021-06-24 /pmc/articles/PMC8307719/ /pubmed/34202880 http://dx.doi.org/10.3390/nano11071666 Text en © 2021 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
Ganshina, Elena Alexandrovna
Garshin, Vladimir Valentinovich
Pripechenkov, Ilya Mikhailovich
Ivkov, Sergey Alexandrovich
Sitnikov, Alexander Victorovich
Domashevskaya, Evelina Pavlovna
Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)
title Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)
title_full Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)
title_fullStr Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)
title_full_unstemmed Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)
title_short Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)(x) (MgF(2))(100−x)
title_sort effect of phase transformations of a metal component on the magneto-optical properties of thin-films nanocomposites (cofezr)(x) (mgf(2))(100−x)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8307719/
https://www.ncbi.nlm.nih.gov/pubmed/34202880
http://dx.doi.org/10.3390/nano11071666
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