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An ac susceptibility study in capped Ni/Ni(OH)(2) core-shell nanoassemblies: dual peak observations

Date
2011
Abstract
In this study, the ac susceptibility (Ï ' and Ï '') variation with temperature (10â 100 K) for oleic acid (OA) capped Ni/Ni(OH)2 coreâ shell nanoparticle assemblies are reported at frequencies varying from 0.1 to 1000 Hz. Nanoparticle assemblies, with two average particle diameters of ~34 nm and ~14 nm, were synthesized using a wet chemical synthesis approach. Two peaks in the ac susceptibility versus temperature curves are clearly discernable for each of the samples. The first, occurring at ~22 K was attributed to the paramagnetic/antiferromagnetic transition of the Ni(OH)2 present in the shell. The second higher temperature peak was attributed to the superparamagnetic blocking of the pure Ni situated at the core of the nanoparticles. The higher temperature peaks in both the Ï ' and Ï '' curves were observed to increase with increasing frequency. Thus the Néel and the blocking temperatures for such coreâ shell nanoassemblies were clearly identified from the ac analysis, whereas they were not discernible (superimposed) even from very low dc (FC/ZFC) field measurements. Interparticle interactions within the assemblies were studied through the fitting of phenomenological laws to the experimental datasets. It is observed that even with an OA capping layer, larger Ni/Ni(OH)2 nanoparticles experience a greater degree of sub-capping layer oxidation thus producing lower magnetic interaction strengths.
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Description
peer-reviewed
Publisher
IOP Publishing
Citation
Journal of Physics D: Applied Physics;44 (32),
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Funding code
Funding Information
Science Foundation Ireland (SFI), European Research Council (ERC)
Sustainable Development Goals
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Type
Article
Rights
https://creativecommons.org/licenses/by-nc-sa/1.0/
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