Nanoscale characterization and magnetic property of NiCoCu/Cu multilayer nanowires

NiCo/Cu multilayer nanowires have been successfully fabricated by a pulse electrodeposition technique using anodic aluminum oxide templates, and their chemistry, crystal structure and magnetic properties characterized at the nanoscale. It was found that each individual nanowire had a regular periodi...

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Veröffentlicht in:Nanotechnology 2012-12, Vol.23 (50), p.505707-505707
Hauptverfasser: Qi, Kuo, Li, Xinghua, Zhang, Hong, Wang, Li, Xue, Desheng, Zhang, Haoli, Zhou, Baofan, Mellors, Nigel J, Peng, Yong
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Sprache:eng
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Zusammenfassung:NiCo/Cu multilayer nanowires have been successfully fabricated by a pulse electrodeposition technique using anodic aluminum oxide templates, and their chemistry, crystal structure and magnetic properties characterized at the nanoscale. It was found that each individual nanowire had a regular periodic structure. The NiCo/Cu nanowires also displayed a continuous morphology, smooth surface and polycrystalline fcc structure. EDX elemental mappings confirmed the presence of nickel, cobalt and copper, which appear clearly with a periodic distribution throughout the samples. Both the NiCo and Cu layers were polycrystalline and the average length of the interlayers between NiCo and Cu layers was approximately 3-4 nm. The NiCo/Cu nanowire arrays had an easy axis parallel to the length of wire and exhibited a curling magnetization reversal mechanism. This study highlights the basis morphological, structural and chemical information for NiCoCu/Cu multilayer nanowires, which is critical for their applications in nanodevices and nanoelectronics.
ISSN:0957-4484
1361-6528
DOI:10.1088/0957-4484/23/50/505707