The use of rare earths in data storage devices is expensive and polluting. Their replacement with iron oxide would make it possible to avoid this. Below a size of 20 nm, iron oxide nanoparticles cannot be considered as permanent magnet. An alternative is to combine them with another magnetic phase to enhance their magnetic anisotropy via interfacial exchange coupling within core@shell nanoparticles. However, the magnetic stability of the latter remains insufficient. The scope of this thesis is to design a new type of magnetic nanoparticles of core@shell@shell structure with a Fe3-dO4 core and CoFe2O4, CoO or NiO as shells which has further enhance the magnetic properties while maintaining a size below 18 nm. The in-depth study of their stru...
International audienceThanks to important advances in synthesis techniques, a wide collection of bim...
Core–shell nanoparticles (NPs), which consist in a ferrimagnetic (FIM)/antiferromagnetic (AFM) inter...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
The use of rare earths in data storage devices is expensive and polluting. Their replacement with ir...
Abstract Two sets of core/shell magnetic nanoparticles, CoFe2O4/Fe3O4 and Fe3O4/CoFe2O4, with a fixe...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
Résumé en anglais suivi des mots-clés en anglaisThe use of iron oxide nanoparticles in nanomedicine ...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
Les nanoparticules magnétiques de structure spinelle MFe2O4 (M = Fe, Co, Mn, Zn, Ni...) ont été larg...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
International audienceExchange coupled nanoparticles that combine hard and soft magnetic phases are ...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
Because of their promising applications, particularly in the field of biomedicine, many research act...
International audienceThanks to important advances in synthesis techniques, a wide collection of bim...
Core–shell nanoparticles (NPs), which consist in a ferrimagnetic (FIM)/antiferromagnetic (AFM) inter...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
The use of rare earths in data storage devices is expensive and polluting. Their replacement with ir...
Abstract Two sets of core/shell magnetic nanoparticles, CoFe2O4/Fe3O4 and Fe3O4/CoFe2O4, with a fixe...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
Résumé en anglais suivi des mots-clés en anglaisThe use of iron oxide nanoparticles in nanomedicine ...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...
Les nanoparticules magnétiques de structure spinelle MFe2O4 (M = Fe, Co, Mn, Zn, Ni...) ont été larg...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
International audienceExchange coupled nanoparticles that combine hard and soft magnetic phases are ...
Although single magnetic domain nanoparticles are very promising for many applications, size reducti...
Because of their promising applications, particularly in the field of biomedicine, many research act...
International audienceThanks to important advances in synthesis techniques, a wide collection of bim...
Core–shell nanoparticles (NPs), which consist in a ferrimagnetic (FIM)/antiferromagnetic (AFM) inter...
Nanoparticles that combine several magnetic phases offer wide perspectives for cutting edge applicat...