The thermal reduction of hydrothermally synthesised α-Fe2O3 nanorods (NRs) to Fe3O4 NRs under hydrogen is investigated. Complete reduction of α-Fe2O3 NRs to Fe3O4 NRs was achieved during in situ XRD under 1 bar H2 atmosphere at 360°C. Complementary environmental transmission electron microscope investigation at high resolution, during in situ heating under an H2 pressure of 5 mbar at 500°C, provided evidence for the very first stages of transformation, supporting a model for the migration of oxygen along favoured α-Fe2O3 lattice planes during the templated thermal reduction of α-Fe2O3 NRs to Fe3O4 NRs
The hydrothermal process is a method that is capable of producing high purity iron oxide nanostructu...
Through investigation of the intermediate specimens during the hydrolysis of FeCl3 in the presence o...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
The thermal reduction of hydrothermally synthesised α-Fe2O3 nanorods (NRs) to Fe3O4 NRs under hydrog...
The investigation of rapidly quenched β-FeOOH and α-Fe2O3 hydrothermal synthesis reaction products, ...
Acicular α-Fe2O3 nanorods (NRs), at an intermediate stage of development, were isolated using a snap...
The hydrothermal synthesis (HS) of α-Fe2O3 nanorods (NRs) is investigated using a combination of com...
Polymorphous transformation of rod-shaped gamma-Fe2O3 was applied to fabricate Fe3O4/Fe2O3 nanorods....
A novel valve-assisted pressure autoclave is described, facilitating ‘snapshot’ investigations of hy...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
The reduction kinetics of Fe2O3 nanopowder was investigated by monitoring the reduction behavior in ...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
The oxidation of solution-synthesized iron (Fe) and iron carbide (Fe2C) nanoparticles was studied in...
Atomic-scale structural dynamics and phase transformation pathways were probed, <i>in situ,</i> duri...
The hydrothermal process is a method that is capable of producing high purity iron oxide nanostructu...
Through investigation of the intermediate specimens during the hydrolysis of FeCl3 in the presence o...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...
The thermal reduction of hydrothermally synthesised α-Fe2O3 nanorods (NRs) to Fe3O4 NRs under hydrog...
The investigation of rapidly quenched β-FeOOH and α-Fe2O3 hydrothermal synthesis reaction products, ...
Acicular α-Fe2O3 nanorods (NRs), at an intermediate stage of development, were isolated using a snap...
The hydrothermal synthesis (HS) of α-Fe2O3 nanorods (NRs) is investigated using a combination of com...
Polymorphous transformation of rod-shaped gamma-Fe2O3 was applied to fabricate Fe3O4/Fe2O3 nanorods....
A novel valve-assisted pressure autoclave is described, facilitating ‘snapshot’ investigations of hy...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
The reduction kinetics of Fe2O3 nanopowder was investigated by monitoring the reduction behavior in ...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
The α-Fe2O3(0001)-biphase surface consists of an ordered arrangement of FeO(111) and α-Fe2O3(0001) s...
The oxidation of solution-synthesized iron (Fe) and iron carbide (Fe2C) nanoparticles was studied in...
Atomic-scale structural dynamics and phase transformation pathways were probed, <i>in situ,</i> duri...
The hydrothermal process is a method that is capable of producing high purity iron oxide nanostructu...
Through investigation of the intermediate specimens during the hydrolysis of FeCl3 in the presence o...
Due to their unique properties, iron nanoparticles find diverse applications across various fields,...