We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic magnetite particles with an average size of ~8.4 nm dispersed in the diamagnetic matrix on the blocking of this ensemble in external magnetic field. The two limit cases are investigated: the case of strongly interacting particles, when the value of magnetic dipole-dipole interaction between particles is comparable with the energy of other interactions in the ensemble (the interparticle distance is similar to the nanoparticle diameter) and the case of almost noninteracting particles distant from each other by about ten particle diameters. We demonstrate that the experimental dependence of the blocking temperature on external field is described wel...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Prussian blue analogues (PBA) ferromagnetic nanoparticles CsIxNiII[CrIII(CN)6 ]z·3(H2O) embedded in ...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
A model is developed with the aim of analyzing relevant aspects of interacting magnetic nanoparticle...
We analyze here the equilibrium magnetization state of densely packed interacting superparamagnetic ...
© 2019 Author(s). Magnetic effects caused by dipolar interactions in single-domain magnetic ensemble...
In order to understand inter-particle as well as interfacial interaction of magnetic nanoparticles, ...
In order to understand inter-particle as well as interfacial interaction of magnetic nanoparticles, ...
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...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Prussian blue analogues (PBA) ferromagnetic nanoparticles CsIxNiII[CrIII(CN)6 ]z·3(H2O) embedded in ...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
A model is developed with the aim of analyzing relevant aspects of interacting magnetic nanoparticle...
We analyze here the equilibrium magnetization state of densely packed interacting superparamagnetic ...
© 2019 Author(s). Magnetic effects caused by dipolar interactions in single-domain magnetic ensemble...
In order to understand inter-particle as well as interfacial interaction of magnetic nanoparticles, ...
In order to understand inter-particle as well as interfacial interaction of magnetic nanoparticles, ...
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...
International audiencePrussian blue analogues (PBA) ferromagnetic nanoparticles Cs I x Ni II [Cr III...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Dense systems of magnetic nanoparticles may exhibit dipolar collective behavior. However, two fundam...
Prussian blue analogues (PBA) ferromagnetic nanoparticles CsIxNiII[CrIII(CN)6 ]z·3(H2O) embedded in ...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...