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The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes

The densely packed arrays of Ni nanowires of 70 nm diameter and 6–12 μm length were obtained via electrodeposition into porous alumina membranes (PAAMs) of 55–75 μm thickness. The morphology, microstructure and magnetic properties between the room and liquid-helium temperature of Ni nanowires in PAA...

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Autores principales: Vorobjova, Alla, Tishkevich, Daria, Shimanovich, Dmitriy, Zubar, Tatiana, Astapovich, Ksenia, Kozlovskiy, Artem, Zdorovets, Maxim, Zhaludkevich, Aliaksandr, Lyakhov, Dmitry, Michels, Dominik, Vinnik, Denis, Fedosyuk, Valery, Trukhanov, Alex
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/PMC8694122/
https://www.ncbi.nlm.nih.gov/pubmed/35424352
http://dx.doi.org/10.1039/d0ra07529a
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author Vorobjova, Alla
Tishkevich, Daria
Shimanovich, Dmitriy
Zubar, Tatiana
Astapovich, Ksenia
Kozlovskiy, Artem
Zdorovets, Maxim
Zhaludkevich, Aliaksandr
Lyakhov, Dmitry
Michels, Dominik
Vinnik, Denis
Fedosyuk, Valery
Trukhanov, Alex
author_facet Vorobjova, Alla
Tishkevich, Daria
Shimanovich, Dmitriy
Zubar, Tatiana
Astapovich, Ksenia
Kozlovskiy, Artem
Zdorovets, Maxim
Zhaludkevich, Aliaksandr
Lyakhov, Dmitry
Michels, Dominik
Vinnik, Denis
Fedosyuk, Valery
Trukhanov, Alex
author_sort Vorobjova, Alla
collection PubMed
description The densely packed arrays of Ni nanowires of 70 nm diameter and 6–12 μm length were obtained via electrodeposition into porous alumina membranes (PAAMs) of 55–75 μm thickness. The morphology, microstructure and magnetic properties between the room and liquid-helium temperature of Ni nanowires in PAAMs have been investigated using scanning electron microscopy, X-ray diffraction and vibrating sample magnetometry. The crystal structure of the Ni nanowires is fcc with (220) preferred orientation. The magnetic characteristics of the Ni nanowires in PAAMs were compared with the same characteristics of bulk Ni and with other researchers' data. The effect of the porous alumina membrane and the Ni nanowires synthesis conditions on the magnetic characteristics of Ni nanowire arrays has been studied. The coercivity reached more than 750 kOe and the squareness ratio up to 0.65 under the proposed optimal synthesis conditions for Ni nanowires. Magnetic parameters of the densely packed arrays of Ni nanowires allow using them in magnetic recording media, hard disk drives, storage systems and sensors. In addition, such structures are of considerable interest for basic research on nanomagnetism which is significantly different from the magnetic properties of bulk and thin films materials.
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spelling pubmed-86941222022-04-13 The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes Vorobjova, Alla Tishkevich, Daria Shimanovich, Dmitriy Zubar, Tatiana Astapovich, Ksenia Kozlovskiy, Artem Zdorovets, Maxim Zhaludkevich, Aliaksandr Lyakhov, Dmitry Michels, Dominik Vinnik, Denis Fedosyuk, Valery Trukhanov, Alex RSC Adv Chemistry The densely packed arrays of Ni nanowires of 70 nm diameter and 6–12 μm length were obtained via electrodeposition into porous alumina membranes (PAAMs) of 55–75 μm thickness. The morphology, microstructure and magnetic properties between the room and liquid-helium temperature of Ni nanowires in PAAMs have been investigated using scanning electron microscopy, X-ray diffraction and vibrating sample magnetometry. The crystal structure of the Ni nanowires is fcc with (220) preferred orientation. The magnetic characteristics of the Ni nanowires in PAAMs were compared with the same characteristics of bulk Ni and with other researchers' data. The effect of the porous alumina membrane and the Ni nanowires synthesis conditions on the magnetic characteristics of Ni nanowire arrays has been studied. The coercivity reached more than 750 kOe and the squareness ratio up to 0.65 under the proposed optimal synthesis conditions for Ni nanowires. Magnetic parameters of the densely packed arrays of Ni nanowires allow using them in magnetic recording media, hard disk drives, storage systems and sensors. In addition, such structures are of considerable interest for basic research on nanomagnetism which is significantly different from the magnetic properties of bulk and thin films materials. The Royal Society of Chemistry 2021-01-21 /pmc/articles/PMC8694122/ /pubmed/35424352 http://dx.doi.org/10.1039/d0ra07529a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Vorobjova, Alla
Tishkevich, Daria
Shimanovich, Dmitriy
Zubar, Tatiana
Astapovich, Ksenia
Kozlovskiy, Artem
Zdorovets, Maxim
Zhaludkevich, Aliaksandr
Lyakhov, Dmitry
Michels, Dominik
Vinnik, Denis
Fedosyuk, Valery
Trukhanov, Alex
The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes
title The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes
title_full The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes
title_fullStr The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes
title_full_unstemmed The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes
title_short The influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of Ni nanowires in porous anodic alumina membranes
title_sort influence of the synthesis conditions on the magnetic behaviour of the densely packed arrays of ni nanowires in porous anodic alumina membranes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8694122/
https://www.ncbi.nlm.nih.gov/pubmed/35424352
http://dx.doi.org/10.1039/d0ra07529a
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