The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle solutions are presented. The use of complementary structural and morphological probes (like transmission electron microscopy, high resolution electron microscopy, X-ray absorption spectroscopy) allowed to relate the magnetic properties to the size, morphology, composition and atomic structure of the nanoparticles. All data agree on the presence of a coreshell structure of NPs made of a metallic Co core surrounded by a thin Co-oxide layer. The coreshell microstructure of NPs affects its magnetic response mainly raising the anisotropy constant. (C) 2010 Elsevier B.V. All rights reserved
International audienceStarting from a colloidal solution of dodecanoic acid-coated Co nanoparticles ...
Cobalt nanoparticles and cobalt-gold core-shell nanoparticles were synthesized via reverse-micelle m...
peer reviewedWe report on the synthesis, structure, and magnetic properties of cobalt nanoparticles ...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle soluti...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle soluti...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle soluti...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle solut...
Abstract. Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and mi...
Abstract. Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and m...
Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and microstructu...
Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and microstruct...
Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and microstruct...
Cobalt-silver (Co-Ag) core-shell nanoparticles with different silver thicknesses were prepared by th...
Cobalt-silver (Co-Ag) core-shell nanoparticles with different silver thicknesses were prepared by th...
We report on the synthesis, structure, and magnetic properties of cobalt nanoparticles with cubic sh...
International audienceStarting from a colloidal solution of dodecanoic acid-coated Co nanoparticles ...
Cobalt nanoparticles and cobalt-gold core-shell nanoparticles were synthesized via reverse-micelle m...
peer reviewedWe report on the synthesis, structure, and magnetic properties of cobalt nanoparticles ...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle soluti...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle soluti...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle soluti...
The magnetic response of nanometer sized Co nanoparticles (NP) prepared using reverse micelle solut...
Abstract. Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and mi...
Abstract. Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and m...
Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and microstructu...
Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and microstruct...
Co nanoclusters were synthesized by an inverse-micelle chemical route. The magnetic and microstruct...
Cobalt-silver (Co-Ag) core-shell nanoparticles with different silver thicknesses were prepared by th...
Cobalt-silver (Co-Ag) core-shell nanoparticles with different silver thicknesses were prepared by th...
We report on the synthesis, structure, and magnetic properties of cobalt nanoparticles with cubic sh...
International audienceStarting from a colloidal solution of dodecanoic acid-coated Co nanoparticles ...
Cobalt nanoparticles and cobalt-gold core-shell nanoparticles were synthesized via reverse-micelle m...
peer reviewedWe report on the synthesis, structure, and magnetic properties of cobalt nanoparticles ...