An experimental study of the dynamic properties of nanoparticle colloids with identical magnetization but different particle size
Measurements of the frequency dependent complex magnetic susceptibility, χ(ω)=χ′(ω)−iχ″(ω), have been used to determine the dynamic properties of three specially prepared 400G (0.04T) magnetic fluids. The samples, denoted by sample 1, sample 2 and sample 3, consisted of magnetite particles of mean d...
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Veröffentlicht in: | Journal of magnetism and magnetic materials 2012-10, Vol.324 (21), p.3443-3447 |
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Sprache: | eng |
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Zusammenfassung: | Measurements of the frequency dependent complex magnetic susceptibility, χ(ω)=χ′(ω)−iχ″(ω), have been used to determine the dynamic properties of three specially prepared 400G (0.04T) magnetic fluids. The samples, denoted by sample 1, sample 2 and sample 3, consisted of magnetite particles of mean diameter 6.4nm, 7.5nm and 9nm respectively and were identical in terms of carrier liquid, surfactant and particle material.
From polarized ferromagnetic measurements, the anisotropy field, HA, the Landau–Lifshitz damping parameter, α, and the precessional decay time, τ0 of the particles were determined. The results show that the HA value for sample 3 was almost twice that of sample 1 and 2, thus confirming that the smaller the particle size, the lower the value of HA. The damping parameter, α, was found to be 0.174 (for sample 1), 0.18 (for sample 2) and 0.16 (for sample 3). The values determined for the precessional decay time, τ0 were 1.197×10−9s, 1.157×10−9s and 0.789×10−9s, for samples 1, 2 and 3 respectively. |
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ISSN: | 0304-8853 |
DOI: | 10.1016/j.jmmm.2012.02.061 |