Magnetic Nanoparticles Embedded in a Silicon Matrix.

Materials (Basel)

Institute of Physics, Karl Franzens University Graz, Universitaetsplatz 5, A-8010 Graz, Austria.

Published: May 2011

AI Article Synopsis

  • This paper discusses the creation of nanocomposites by integrating magnetic nanoparticles into porous silicon using two methods: electrochemical deposition of nickel and infiltration of iron oxide nanoparticles.
  • The particles, which range from 2 to 8 nm in size, organize into a tube-like formation on the silicon pore walls, leading to unique magnetic properties.
  • The magnetic behavior of the nanocomposites can be adjusted by altering the filling factor of the nanoparticles, making them valuable for research and various technological applications.

Article Abstract

This paper represents a short overview of nanocomposites consisting of magnetic nanoparticles incorporated into the pores of a porous silicon matrix by two different methods. On the one hand, nickel is electrochemically deposited whereas the nanoparticles are precipitated on the pore walls. The size of these particles is between 2 and 6 nm. These particles cover the pore walls and form a tube-like arrangement. On the other hand, rather well monodispersed iron oxide nanoparticles, of 5 and 8 nm respectively, are infiltrated into the pores. From their size the particles would be superparamagnetic if isolated but due to magnetic interactions between them, ordering of magnetic moments occurs below a blocking temperature and thus the composite system displays a ferromagnetic behavior. This transition temperature of the nanocomposite can be varied by changing the filling factor of the particles within the pores. Thus samples with magnetic properties which are variable in a broad range can be achieved, which renders this composite system interesting not only for basic research but also for applications, especially because of the silicon base material which makes it possible for today's process technology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5448592PMC
http://dx.doi.org/10.3390/ma4050908DOI Listing

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