Issue 3, 2009

Large-scale synthesis of defined cobalt nanoparticles and magnetic metal–polymer composites

Abstract

We present a method where ε-cobalt nanoparticles with an average diameter of 4.5 nm can be synthesized in a controlled process and in significantly larger quantities than previously reported in the literature, based on the thermal decomposition of dicobaltoctacarbonyl in the presence of oleic acid and trioctylphosphine oxide (TOPO). Moreover, since the resulting particles are coated with an oleate layer, as shown by infrared (IR) spectroscopy, the colloids can be re-dispersed in organic solvents. These dispersions are suitable for the preparation of nanocomposites by a simple procedure, i.e. mixing of the cobalt dispersion with a polymer solution followed by casting and solvent evaporation. Magnetization measurements confirm the expected superparamagnetic behavior for both the cobalt nanoparticles and the metal–polymer nanocomposites.

Graphical abstract: Large-scale synthesis of defined cobalt nanoparticles and magnetic metal–polymer composites

Article information

Article type
Paper
Submitted
28 May 2009
Accepted
24 Aug 2009
First published
28 Sep 2009

Nanoscale, 2009,1, 374-381

Large-scale synthesis of defined cobalt nanoparticles and magnetic metal–polymer composites

J. Schällibaum, F. H. Dalla Torre, W. R. Caseri and J. F. Löffler, Nanoscale, 2009, 1, 374 DOI: 10.1039/B9NR00230H

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