Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevated temperatures which is disadvantageous due to the particle coalescence. Here we report on a process for reduction of iron oxides at elevated pressures and show that by increasing hydrogen pressure from atmospheric to 53 MPa, it is possible to reduce the reaction temperature from 663 K down to 483 K, resulting in phase-pure α-Fe nanoparticles without noticeable particle growth. By subsequent nitrogenation in an ammonia flow, fine, 99% phase-pure α″-Fe16N2 nanoparticles could be synthesized. The reduction temperature and the respective particle size has a significant influence on the nitrogenation step. α″-Fe16N2 nanoparticles exhibit semi-ha...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
Magnetic nanoparticles attract increasing attention because of their current and potential biomedica...
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...
The α′′-Fe16N2 has attracted much interest as a candidate for semi-hard magnetic materials. As repor...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
α″-Fe16N2 nanoparticles were produced from starting Fe3O4 powders via hydrogen reduction and low tem...
Iron nitride Fe8Nx could potentially provide an environmentally friendly and resource-efficient func...
Iron nitride Fe8Nx could potentially provide an environmentally friendly and resource-efficient func...
Abstract Structural and magnetic properties of Fe oxide nanoparticles prepared by laser pyrolysis an...
An optimum route to synthesize Fe-50 wt.% Co nanoparticles and their magnetic properties were invest...
ε-Fe3N shows interesting magnetism but is difficult to obtain as a pure and single-phase sample. We ...
We report on the transformation via hydrogen reduction of spindle-type hematite nanoparticles into h...
Fe/Nd2O3 core-shell nanoparticles (CSNs) with a mean diameter of 35 nm were produced successfully by...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
Magnetic nanoparticles attract increasing attention because of their current and potential biomedica...
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...
The α′′-Fe16N2 has attracted much interest as a candidate for semi-hard magnetic materials. As repor...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
α″-Fe16N2 nanoparticles were produced from starting Fe3O4 powders via hydrogen reduction and low tem...
Iron nitride Fe8Nx could potentially provide an environmentally friendly and resource-efficient func...
Iron nitride Fe8Nx could potentially provide an environmentally friendly and resource-efficient func...
Abstract Structural and magnetic properties of Fe oxide nanoparticles prepared by laser pyrolysis an...
An optimum route to synthesize Fe-50 wt.% Co nanoparticles and their magnetic properties were invest...
ε-Fe3N shows interesting magnetism but is difficult to obtain as a pure and single-phase sample. We ...
We report on the transformation via hydrogen reduction of spindle-type hematite nanoparticles into h...
Fe/Nd2O3 core-shell nanoparticles (CSNs) with a mean diameter of 35 nm were produced successfully by...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
Magnetic nanoparticles attract increasing attention because of their current and potential biomedica...