Nanoparticles consisting of a magnetic core (Fe3O4, CoFe2O4 and CuFe2O4) and a hydrophobic shell were prepared by chemical co-precipitation of the inorganic cores and by subsequently modifying the surface with dodecanoic acid. The nanoparticles were then dispersed in cyclohexane to form stable ferrofluids. These dispersions were investigated by small-angle scattering of polarized neutrons and the data were interpreted according to a `pearl-necklace' model, opportunely modified to account for the core–shell structure of the particles. Results of the fitting show that the particles consist of a magnetic core with a mean radius of 40–50 A and an organic shell with a thickness of 7–8 A. These nanoparticles assemble in fractal aggregates when a ...
We present a study of magnetic and structural properties of CoFe2O4 nanoparticles suspended in an or...
Self-assembly of magnetic nanoparticles, in general, is of interest due to the broad range of applic...
In this study the structural and magnetization properties of a CoFe2O4-based ferrofluid was investig...
A new development in small-angle neutron scattering with polarization analysis allows us to directly...
Despite the importance of reducing production costs, investigating the hierarchical nanostructure an...
Small-angle neutron scattering with polarization analysis reveals that Fe3O4 nanoparticles with 90 Å...
Polarization-analyzed small-angle neutron scattering methods are used to determine the spin morpholo...
Polarization-analyzed small-angle neutron-scattering methods are used to determine the spin arrangem...
Nous explorons les propriétés structurales de nanoparticules cœur-coquille, avec un cœur de ferrite ...
Bare and oleic acid capped magnetite nanoparticles were obtained by coprecipitation method. Ferroflu...
Magnetic nanoparticles (NPs) have garnered much interest due to the unique properties that emergewhe...
Ferrofluids are nanomaterials consisting of magnetic nanoparticles that are dispersed in a carrier f...
Neutron Small Angle Scattering has been used to follow processes of particle aggregation in ferroflu...
Our objective is to understand how the magnetic properties of nanoparticles (NPs) can be affected by...
Field-induced structure formation in a ferrofluid with well-defined magnetite nanoparticles with a p...
We present a study of magnetic and structural properties of CoFe2O4 nanoparticles suspended in an or...
Self-assembly of magnetic nanoparticles, in general, is of interest due to the broad range of applic...
In this study the structural and magnetization properties of a CoFe2O4-based ferrofluid was investig...
A new development in small-angle neutron scattering with polarization analysis allows us to directly...
Despite the importance of reducing production costs, investigating the hierarchical nanostructure an...
Small-angle neutron scattering with polarization analysis reveals that Fe3O4 nanoparticles with 90 Å...
Polarization-analyzed small-angle neutron scattering methods are used to determine the spin morpholo...
Polarization-analyzed small-angle neutron-scattering methods are used to determine the spin arrangem...
Nous explorons les propriétés structurales de nanoparticules cœur-coquille, avec un cœur de ferrite ...
Bare and oleic acid capped magnetite nanoparticles were obtained by coprecipitation method. Ferroflu...
Magnetic nanoparticles (NPs) have garnered much interest due to the unique properties that emergewhe...
Ferrofluids are nanomaterials consisting of magnetic nanoparticles that are dispersed in a carrier f...
Neutron Small Angle Scattering has been used to follow processes of particle aggregation in ferroflu...
Our objective is to understand how the magnetic properties of nanoparticles (NPs) can be affected by...
Field-induced structure formation in a ferrofluid with well-defined magnetite nanoparticles with a p...
We present a study of magnetic and structural properties of CoFe2O4 nanoparticles suspended in an or...
Self-assembly of magnetic nanoparticles, in general, is of interest due to the broad range of applic...
In this study the structural and magnetization properties of a CoFe2O4-based ferrofluid was investig...