Abstract Structural and magnetic properties of Fe oxide nanoparticles prepared by laser pyrolysis and annealed in high pressure hydrogen atmosphere were investigated. The annealing treatments were performed at 200 °C (sample A200C) and 300 °C (sample A300C). The as prepared sample, A, consists of nanoparticles with ~ 4 nm mean particle size and contains C (~ 11 at.%), Fe and O. The Fe/O ratio is between γ-Fe2O3 and Fe3O4 stoichiometric ratios. A change in the oxidation state, crystallinity and particle size is evidenced for the nanoparticles in sample A200C. The Fe oxide nanoparticles are completely reduced in sample A300C to α-Fe single phase. The blocking temperature increases from 106 K in A to 110 K in A200C and above room temperature i...
Fe/metal oxide nanocomposite particles were produced by means of hydrogen reduction assisted ultraso...
The correlation between magneto-structural properties of iron oxide nanoparticles and their heating ...
This study is to understand the effect of oxidation, especially magnetically, on iron nanoparticles....
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
Morphological, structural and magnetic properties of 4.8 nm iron oxide nanoparticles have been inves...
Changes in morphological and magnetic properties of Fe3O4 nanoparticles before and after annealing a...
The magnetic properties of iron oxide nanoparticles prepared by the chemical decomposition of the ir...
Ultrafine Fe particles have been prepared by the inert gas condensation method and subsequently oxyg...
Magnetic properties of Fe2O3/SiO2 samples were studied after being produced by sol-gel synthesis and...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Nanoparticles of iron and iron oxide have been prepared in a thermal diffusion cloud chamber using p...
Nanoparticles of iron and iron oxide have been prepared in a thermal diffusion cloud chamber using p...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Fe/metal oxide nanocomposite particles were produced by means of hydrogen reduction assisted ultraso...
The correlation between magneto-structural properties of iron oxide nanoparticles and their heating ...
This study is to understand the effect of oxidation, especially magnetically, on iron nanoparticles....
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
Morphological, structural and magnetic properties of 4.8 nm iron oxide nanoparticles have been inves...
Changes in morphological and magnetic properties of Fe3O4 nanoparticles before and after annealing a...
The magnetic properties of iron oxide nanoparticles prepared by the chemical decomposition of the ir...
Ultrafine Fe particles have been prepared by the inert gas condensation method and subsequently oxyg...
Magnetic properties of Fe2O3/SiO2 samples were studied after being produced by sol-gel synthesis and...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Nanoparticles of iron and iron oxide have been prepared in a thermal diffusion cloud chamber using p...
Nanoparticles of iron and iron oxide have been prepared in a thermal diffusion cloud chamber using p...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Fe/metal oxide nanocomposite particles were produced by means of hydrogen reduction assisted ultraso...
The correlation between magneto-structural properties of iron oxide nanoparticles and their heating ...
This study is to understand the effect of oxidation, especially magnetically, on iron nanoparticles....