Iron oxide nanoparticles with a mean size of approximately 5 nm were synthesized by irradiating micro-emulsions containing iron salts with energetic electrons. The properties of the nanoparticles were investigated using scanning electron microscopy, high-resolution transmission electron microscopy, selective area diffraction and vibrating sample magnetometry. It was found that formation of superparamagnetic nanoparticles begins at a dose of 50 kGy, though these particles show low crystallinity, and a higher portion is amorphous. With increasing doses, an increasing crystallinity and yield could be observed, which is reflected in an increasing saturation magnetization. The blocking temperature and effective anisotropy constant were determine...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
This work deals with a preparation of superparamagnetic nano- and microparticles with hydrophilic su...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
The ferromagnetic properties of magnetite (Fe3O4) were influenced by the nanoparticle size, hence im...
This work presents the results of an investigation on maghemite (γ -Fe2O3) nanoparticles magnetic pr...
In-situ precipitation method is widely used and reported in the literature for the synthesis of iron...
antiferromagnetic materials) have many promising industrial and biomedical applications such as cata...
In this study production of fine particle Fe2O3 via microwave processing of Fe(NO3)(3)center dot nH(...
A low-energy new method based in a one-step synthesis at room temperature produces very small maghem...
A low-energy new method based in a one-step synthesis at room temperature produces very small maghem...
A low-energy new method based in a one-step synthesis at room temperature produces very small maghem...
Very small maghemite nanoparticles (~3 nm) are obtained through a one-step synthesis at room tempera...
\u3cp\u3e In-situ precipitation method is widely used and reported in th...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
This work deals with a preparation of superparamagnetic nano- and microparticles with hydrophilic su...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
The ferromagnetic properties of magnetite (Fe3O4) were influenced by the nanoparticle size, hence im...
This work presents the results of an investigation on maghemite (γ -Fe2O3) nanoparticles magnetic pr...
In-situ precipitation method is widely used and reported in the literature for the synthesis of iron...
antiferromagnetic materials) have many promising industrial and biomedical applications such as cata...
In this study production of fine particle Fe2O3 via microwave processing of Fe(NO3)(3)center dot nH(...
A low-energy new method based in a one-step synthesis at room temperature produces very small maghem...
A low-energy new method based in a one-step synthesis at room temperature produces very small maghem...
A low-energy new method based in a one-step synthesis at room temperature produces very small maghem...
Very small maghemite nanoparticles (~3 nm) are obtained through a one-step synthesis at room tempera...
\u3cp\u3e In-situ precipitation method is widely used and reported in th...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...
International audienceIron oxide nanoparticles have received remarkable attention in different appli...