CoFe2O4/FeCo-FeO core-shell nanoparticles with an average particle size of about 4.3 nm were prepared by reducing nanoparticles of superparamagnetic cobalt-ferrite under hydrogen and oxygen atmospheres. The low temperature magnetic hysteresis showed an interesting behavior which has only been observed in thin film multilayer systems. At low magnetic fields H (< 0.2 kOe) the behavior is dominated by the magnetic structure of the magnetically soft shell while for higher values of 11 the exchange-spring core-shell coupling plays a major role. A particle model which is coherent with the observed magnetic behavior has been also proposed. (C) 2014 Elsevier B.V. All rights reserve
Core/shell hetero-nanostructures of hydrothermally synthesised cobalt and nickel ferrites are shown ...
Magnetic nanoparticles of cobalt ferrites Co x Fe3−x O4 (x = 1 or 2) have been obtained either by me...
Cobalt ferrite nanoparticles were prepared by sol-gel technique and were annealed at 900 degrees C i...
Bimagnetic monodisperse CoFe2O4/Fe3O4 core/shell nanoparticles have been prepared by solution evapor...
CoFe2O4 nanoparticles prepared by chemical coprecipitation method in a magnetic field exhibit novel ...
CoFe2O4 nanoparticles prepared by chemical coprecipitation method in a magnetic field exhibit novel ...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
AbstractIn this work we report a study of the magnetic behavior of ferrimagnetic oxide CoFe2O4 and f...
Bi-magnetic core/shell nanoparticles were synthesized by a two-step high-temperature decomposition m...
Magnetic nanoparticles of cobalt ferrites CoxFe3-xO4 (x=1 or 2) have been obtained either by mechani...
Magnetic properties of iron oxide nanoparticles with spinel structure are strictly related to a comp...
Bimagnetic nanoparticles have been proposed for the design of new materials with controlled properti...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
Tuning the core–shell morphology of bimagnetic nanoparticles and its associated exchange bias behavi...
Cobaltferritenanoparticles (size: 26±4nm) have been synthesized by coprecipitation route. The coerci...
Core/shell hetero-nanostructures of hydrothermally synthesised cobalt and nickel ferrites are shown ...
Magnetic nanoparticles of cobalt ferrites Co x Fe3−x O4 (x = 1 or 2) have been obtained either by me...
Cobalt ferrite nanoparticles were prepared by sol-gel technique and were annealed at 900 degrees C i...
Bimagnetic monodisperse CoFe2O4/Fe3O4 core/shell nanoparticles have been prepared by solution evapor...
CoFe2O4 nanoparticles prepared by chemical coprecipitation method in a magnetic field exhibit novel ...
CoFe2O4 nanoparticles prepared by chemical coprecipitation method in a magnetic field exhibit novel ...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
AbstractIn this work we report a study of the magnetic behavior of ferrimagnetic oxide CoFe2O4 and f...
Bi-magnetic core/shell nanoparticles were synthesized by a two-step high-temperature decomposition m...
Magnetic nanoparticles of cobalt ferrites CoxFe3-xO4 (x=1 or 2) have been obtained either by mechani...
Magnetic properties of iron oxide nanoparticles with spinel structure are strictly related to a comp...
Bimagnetic nanoparticles have been proposed for the design of new materials with controlled properti...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
Tuning the core–shell morphology of bimagnetic nanoparticles and its associated exchange bias behavi...
Cobaltferritenanoparticles (size: 26±4nm) have been synthesized by coprecipitation route. The coerci...
Core/shell hetero-nanostructures of hydrothermally synthesised cobalt and nickel ferrites are shown ...
Magnetic nanoparticles of cobalt ferrites Co x Fe3−x O4 (x = 1 or 2) have been obtained either by me...
Cobalt ferrite nanoparticles were prepared by sol-gel technique and were annealed at 900 degrees C i...