Size effect on the internal magnetic structure has been investigated on weakly interacting magnetite (Fe(3)O(4)) nanoparticles by ferromagnetic resonance experiments at 9.5 GHz as a function of temperature (4-300 K). A set of three samples with mean particle size of 2.5 nm, 5.0 nm and 13.0 nm, respectively, were prepared by chemical route with narrow size distribution (sigma < 0.27). To minimize the dipolar interaction, the particles were dispersed in a liquid and a solid polymer matrix at similar to 0.6% in mass. By freezing the liquid suspension with an applied external field, a textured was obtained. Thus, both random and textured suspensions were studied and compared. The ferromagnetic resonance experiments in zero-field-cooled and fiel...
This paper focuses on the study of the magnetic properties of 9 nm magnetite nanocrystals. XRD and...
Fe3O4 and ZnxFe3−xO4 pure and doped magnetite magnetic nanoparticles (NPs) were prepared in aqueous...
The performance characteristics of magnetic nanoparticles toward application, e.g., in medicine and ...
Magnetic measurements have been carried out on nanocomposites consisting of individual maghemite (ga...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
Magnetic properties, arising from surface exchange and interparticle interactions of the Fe3O4 (magn...
We investigated intra/inter particle interactions in single domain size magnetite (Fe3O4), maghemite...
A three-step aqueous approach to obtain large (>50 nm) magnetite single-core particles has been deve...
The dependence of the magnetic responsiveness on magnetite nanoparticle size has been studied. Monod...
190-194Two nano-particle samples of magnetite have been prepared with average particle sizes of ~26...
Magnetite nanoparticles with a size of 5–6 nm with potential impact on biomedicine and information/c...
The low frequency hysteresis loops and specific absorption rate (SAR) of assemblies of magnetite nan...
In this work, we have investigated a water-based ferrofluid for its magnetic properties. The nanopar...
Fe3O4 [Magnetite] nanoparticles have magnetism that differs greatly from their bulk counterparts. Wh...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
This paper focuses on the study of the magnetic properties of 9 nm magnetite nanocrystals. XRD and...
Fe3O4 and ZnxFe3−xO4 pure and doped magnetite magnetic nanoparticles (NPs) were prepared in aqueous...
The performance characteristics of magnetic nanoparticles toward application, e.g., in medicine and ...
Magnetic measurements have been carried out on nanocomposites consisting of individual maghemite (ga...
We report on the effect of interparticle magnetic interactions in an ensemble of superparamagnetic ma...
Magnetic properties, arising from surface exchange and interparticle interactions of the Fe3O4 (magn...
We investigated intra/inter particle interactions in single domain size magnetite (Fe3O4), maghemite...
A three-step aqueous approach to obtain large (>50 nm) magnetite single-core particles has been deve...
The dependence of the magnetic responsiveness on magnetite nanoparticle size has been studied. Monod...
190-194Two nano-particle samples of magnetite have been prepared with average particle sizes of ~26...
Magnetite nanoparticles with a size of 5–6 nm with potential impact on biomedicine and information/c...
The low frequency hysteresis loops and specific absorption rate (SAR) of assemblies of magnetite nan...
In this work, we have investigated a water-based ferrofluid for its magnetic properties. The nanopar...
Fe3O4 [Magnetite] nanoparticles have magnetism that differs greatly from their bulk counterparts. Wh...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
This paper focuses on the study of the magnetic properties of 9 nm magnetite nanocrystals. XRD and...
Fe3O4 and ZnxFe3−xO4 pure and doped magnetite magnetic nanoparticles (NPs) were prepared in aqueous...
The performance characteristics of magnetic nanoparticles toward application, e.g., in medicine and ...