International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III (CN)6 ] z ·3(H2O) embedded in CTA+ (cetyltrimethylammonium) matrix have been investigated by magnetometry and magnetic small-angle neutron scattering (SANS). Choosing particle sizes (diameter D = 4.8 and 8.6 nm) well below the single-domain radius and comparable volume fraction of particle, we show that the expected superparamagnetic regime for weakly anisotropic isolated magnetic particles is drastically affected due to the interplay of surface/volume anisotropies and dipolar interactions. For the smallest particles (D = 4.8 nm), magnetocrystalline anisotropy is enhanced by surface spins and drives the system into a regime of ferromagnetica...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
Altres ajuts: ICN2 is funded by the CERCA program/Generalitat de CatalunyaDense systems of magnetic ...
Understanding the effects of interparticle interactions is a vital problem because magnetic nanopart...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
Prussian blue analogues (PBA) ferromagnetic nanoparticles CsIxNiII[CrIII(CN)6 ]z·3(H2O) embedded in ...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
Altres ajuts: ICN2 is funded by the CERCA program/Generalitat de CatalunyaDense systems of magnetic ...
Understanding the effects of interparticle interactions is a vital problem because magnetic nanopart...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
Prussian blue analogues (PBA) ferromagnetic nanoparticles CsIxNiII[CrIII(CN)6 ]z·3(H2O) embedded in ...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
International audiencePrussian blue analogues magnetic nanoparticles (of radius R0 = 2.4–8.6 nm) emb...
Altres ajuts: ICN2 is funded by the CERCA program/Generalitat de CatalunyaDense systems of magnetic ...
Understanding the effects of interparticle interactions is a vital problem because magnetic nanopart...