Nickel nanowire: magnetic ordering synthesis
Magnetic nanowires have been material of interest among researchers due to their unique magnetic properties. In the present research, Nickel (Ni) nanowires with an average diameter of 250 nm and length up to 25 μm have been successfully prepared via anodic alumina oxide (AAO) template-assisted elect...
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ump-221482018-11-15T07:13:35Z http://umpir.ump.edu.my/id/eprint/22148/ Nickel nanowire: magnetic ordering synthesis Mahendran, Samykano R. V., Mohana Sundram K., Sudhakar S. G., Ponnabalam TJ Mechanical engineering and machinery Magnetic nanowires have been material of interest among researchers due to their unique magnetic properties. In the present research, Nickel (Ni) nanowires with an average diameter of 250 nm and length up to 25 μm have been successfully prepared via anodic alumina oxide (AAO) template-assisted electrodeposition method at the different magnetic field intensities and current density. The primary interest is to investigate the effect of the external magnetic field and current density on the morphological, growth length, crystal orientation and growth of the Ni nanowires. Investigation finding reveals that the employed magnetic field and current density smoothened the surface texture, improved growth length and reduced the crystal size. The observed changes are believed to be contributed by the interaction forces induced by the intensity of applied electric field and the external magnetic field known as magnetohydrodynamic (MHD) effect. 2018 Conference or Workshop Item NonPeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/22148/1/57.%20Nickel%20nanowire%20magnetic%20ordering%20synthesis.pdf pdf en http://umpir.ump.edu.my/id/eprint/22148/2/57.1%20Nickel%20nanowire%20magnetic%20ordering%20synthesis.pdf Mahendran, Samykano and R. V., Mohana Sundram and K., Sudhakar and S. G., Ponnabalam (2018) Nickel nanowire: magnetic ordering synthesis. In: International Conference on Advanced Nano Materials (ANM, 2018), 18 - 20 July 2018 , University of Aveiro, Portugal. p. 1.. (Unpublished) |
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TJ Mechanical engineering and machinery Mahendran, Samykano R. V., Mohana Sundram K., Sudhakar S. G., Ponnabalam Nickel nanowire: magnetic ordering synthesis |
description |
Magnetic nanowires have been material of interest among researchers due to their unique magnetic properties. In the present research, Nickel (Ni) nanowires with an average diameter of 250 nm and length up to 25 μm have been successfully prepared via anodic alumina oxide (AAO) template-assisted electrodeposition method at the different magnetic field intensities and current density. The primary interest is to investigate the effect of the external magnetic field and current density on the morphological, growth length, crystal orientation and growth of the Ni nanowires. Investigation finding reveals that the employed magnetic field and current density smoothened the surface texture, improved growth length and reduced the crystal size. The observed changes are believed to be contributed by the interaction forces induced by the intensity of applied electric field and the external magnetic field known as magnetohydrodynamic (MHD) effect. |
format |
Conference or Workshop Item |
author |
Mahendran, Samykano R. V., Mohana Sundram K., Sudhakar S. G., Ponnabalam |
author_facet |
Mahendran, Samykano R. V., Mohana Sundram K., Sudhakar S. G., Ponnabalam |
author_sort |
Mahendran, Samykano |
title |
Nickel nanowire: magnetic ordering synthesis |
title_short |
Nickel nanowire: magnetic ordering synthesis |
title_full |
Nickel nanowire: magnetic ordering synthesis |
title_fullStr |
Nickel nanowire: magnetic ordering synthesis |
title_full_unstemmed |
Nickel nanowire: magnetic ordering synthesis |
title_sort |
nickel nanowire: magnetic ordering synthesis |
publishDate |
2018 |
url |
http://umpir.ump.edu.my/id/eprint/22148/ http://umpir.ump.edu.my/id/eprint/22148/1/57.%20Nickel%20nanowire%20magnetic%20ordering%20synthesis.pdf http://umpir.ump.edu.my/id/eprint/22148/2/57.1%20Nickel%20nanowire%20magnetic%20ordering%20synthesis.pdf |
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2023-09-18T22:32:49Z |
last_indexed |
2023-09-18T22:32:49Z |
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1777416399108440064 |