In this work, we demonstrate that the reduction of the local internal stress by a low-temperature solvent-mediated thermal treatment is an effective post-treatment tool for magnetic hardening of chemically synthesized nanoparticles. As a case study, we used nonstoichiometric cobalt ferrite particles of an average size of 32(8) nm synthesized by thermal decomposition, which were further subjected to solvent-mediated annealing at variable temperatures between 150 and 320 °C in an inert atmosphere. The postsynthesis treatment produces a 50% increase of the coercive field, without affecting neither the remanence ratio nor the spontaneous magnetization. As a consequence, the energy product and the magnetic energy storage capability, key features...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
It is usually considered that nanoparticles synthesized by low-temperature routes present structural...
Cobalt ferrite (CoFe2O4) is an engineering material which is used for applications such as magnetic ...
Cobalt ferrite (CoFe2O4) is an engineering material which is used for applications such as magnetic ...
International audienceMagnetic nanoparticles (NPs) synthesized by low-temperature routes often prese...
Cobalt ferrite nanoparticles (NPs) are promising candidates for application as nanomagnets. The chal...
International audienceMagnetic nanoparticles (NPs) synthesized by low-temperature routes often prese...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
It is usually considered that nanoparticles synthesized by low-temperature routes present structural...
Cobalt ferrite (CoFe2O4) is an engineering material which is used for applications such as magnetic ...
Cobalt ferrite (CoFe2O4) is an engineering material which is used for applications such as magnetic ...
International audienceMagnetic nanoparticles (NPs) synthesized by low-temperature routes often prese...
Cobalt ferrite nanoparticles (NPs) are promising candidates for application as nanomagnets. The chal...
International audienceMagnetic nanoparticles (NPs) synthesized by low-temperature routes often prese...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
Permanent magnets (PMs) are indispensable constituents of electronic devices, consumer appliances, t...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
International audienceCobalt ferrite nanoparticles (d ∼ 11 nm, σd = 0.5) produced by coprecipitation...
This work was focused on the development of synthesis strategies for enhancing the energy product of...
This work was focused on the development of synthesis strategies for enhancing the energy product of...