Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storage and biomedical applications. Highly challenging is the development of simple synthesis methods able to tune the phase composition and a thorough structural, morphologic and magnetic characterization in order to understand and optimize the interactions between hard and soft magnetic phases. Mainly depending on Fe:Pt atomic ratio, multi-phase or single phase FePt nanocomposites have been prepared by thermal treatment of core-shell FePt(Ag)@Fe3O4 nanoparticles at 750 °C for 1 h under flow of a Ar + 5% H2 gas mixture (H2 is necessary to reduce Fe2+ and Fe3+ ions of Fe3O4 to Fe0 atoms and the thermal treatment to form the crystalline soft and ha...
The synthesis of magnetic nanoparticles has been intensively investigated not only for their electri...
FePt/Fe₃O₄ nanoparticles can be used as building blocks to obtain, upon thermal annealing, magnetic ...
We have produced assemblies of FePt nanoparticles using high temperature solution phase synthesis an...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
FePt nanoparticles, containing a near-equal atomic percentage of Fe and Pt, with a face centered te...
Exchange-coupled nanocomposites with hard/soft magnetic phases are promising for the next generation...
Herein, we report magnetic properties of as-synthesized face centered cubic (fcc)-FePt nanoparticles...
Monodisperse FePt nanoparticles were prepared using high temperature solution phase synthesis. Polym...
Research on magnetic nanoparticles (NPs) has become one of the most active and exciting fields in ma...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...
©2003 American Institute of Physics. The electronic version of this article is the complete one and ...
Annealed iron-platinum (FePt) is ferromagnetic in a nanoscale regime which is necessary for energy a...
Abstract Monodisperse FePt nanoparticles with size of 4.5 and 6.0 nm were prepared by simultaneous r...
International audienceIron/platinum based core-shell nanoparticles were obtained by the inverse mice...
The synthesis of magnetic nanoparticles has been intensively investigated not only for their electri...
FePt/Fe₃O₄ nanoparticles can be used as building blocks to obtain, upon thermal annealing, magnetic ...
We have produced assemblies of FePt nanoparticles using high temperature solution phase synthesis an...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
FePt nanoparticles, containing a near-equal atomic percentage of Fe and Pt, with a face centered te...
Exchange-coupled nanocomposites with hard/soft magnetic phases are promising for the next generation...
Herein, we report magnetic properties of as-synthesized face centered cubic (fcc)-FePt nanoparticles...
Monodisperse FePt nanoparticles were prepared using high temperature solution phase synthesis. Polym...
Research on magnetic nanoparticles (NPs) has become one of the most active and exciting fields in ma...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...
©2003 American Institute of Physics. The electronic version of this article is the complete one and ...
Annealed iron-platinum (FePt) is ferromagnetic in a nanoscale regime which is necessary for energy a...
Abstract Monodisperse FePt nanoparticles with size of 4.5 and 6.0 nm were prepared by simultaneous r...
International audienceIron/platinum based core-shell nanoparticles were obtained by the inverse mice...
The synthesis of magnetic nanoparticles has been intensively investigated not only for their electri...
FePt/Fe₃O₄ nanoparticles can be used as building blocks to obtain, upon thermal annealing, magnetic ...
We have produced assemblies of FePt nanoparticles using high temperature solution phase synthesis an...