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Formation and magnetic manipulation of periodically aligned microchains in thin plastic membranes

Academic Article
Publication Date:
2012
abstract:
We demonstrate the fabrication of polymeric membranes that incorporate a few layers of periodically aligned magnetic microchains formed upon the application of variable magnetic fields. A homogeneous solution containing an elastomeric polymer and a small amount of colloidal magnetic nanoparticles is spin coated on glass slides, thereby forming thin magnetic membranes of ca. 10 um thickness. Subsequent application of a homogeneous magnetic field results in the orientation of the magnetic clusters and their further motion into the matrix along the field lines forming layers of aligned chains. The study of the kinetics of alignment demonstrates that the chains are formed in the first hour of exposure to the magnetic field. Above all, a detailed microscopy study reveals that the dimensions and the periodicity of the microchains are effectively controlled by the intensity of the magnetic field, in good agreement with the theoretical simulations. This ability to form and manipulate the size and the distribution of chains into the polymeric matrix gives the opportunity to develop multifunctional composite materials ready to be used in various applications such as electromagnetic shielding, or multifunctional magnetic membranes etc.
Iris type:
01.01 Articolo in rivista
Keywords:
ANISOTROPIC REINFORCEMENT; ORDERED STRUCTURES; FLUID FILMS; FIELD; NANOPARTICLES
List of contributors:
Cozzoli, PANTALEO DAVIDE; Bertoni, Giovanni
Authors of the University:
BERTONI GIOVANNI
Handle:
https://iris.cnr.it/handle/20.500.14243/222061
Published in:
JOURNAL OF APPLIED PHYSICS
Journal
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URL

https://aip.scitation.org/doi/10.1063/1.4759328
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