Dynamics of paramagnetic nanostructured rods under rotating field

The dynamical rotational behavior of magnetic nanostructured rods based on the auto-association of maghemite nanoparticles and block-copolymers is probed by optical microscopy under rotating fields in a simple liquid. The re-orientation of the rods by a field rotated by 90° is first studied. The mea...

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Veröffentlicht in:Journal of magnetism and magnetic materials 2011-05, Vol.323 (10), p.1309-1313
Hauptverfasser: Frka-Petesic, B., Erglis, K., Berret, J.F., Cebers, A., Dupuis, V., Fresnais, J., Sandre, O., Perzynski, R.
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Sprache:eng
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Zusammenfassung:The dynamical rotational behavior of magnetic nanostructured rods based on the auto-association of maghemite nanoparticles and block-copolymers is probed by optical microscopy under rotating fields in a simple liquid. The re-orientation of the rods by a field rotated by 90° is first studied. The measured relaxation is characteristic of paramagnetic objects. Under a stationary rotating field, a synchronous rotational regime is observed at low field frequency. Above a frequency threshold which scales as H 2, the dynamics becomes asynchronous with back-and-forth rotations. These behaviors are well predicted by the presented model. ►We explore the rotational dynamics of hybrid paramagnetic nanorods. ►They are based on γ-Fe 2O 3 nanoparticles glued together with di-block copolymers. ►They re-orientate as paramagnetic rods under a magnetic field rotated by 90°. ►Under rotating magnetic fields of low pulsation ω, they rotate synchroneously. ►Above a critical pulsation, back-and-forth dynamics and localized mode are observed.
ISSN:0304-8853
1873-4766
DOI:10.1016/j.jmmm.2010.11.036