Nanostructures of two transition metal oxides, WO(3) and α-Fe_2O_3, have been grown by a thermal deposition method without a catalyst and characterized by x-ray diffraction, scanning electron microscopy (SEM), high-resolution transmission electron microscopy and cathodoluminescence (CL) in the SEM. WO(3) micro and nanorods exhibit CL emission two orders of magnitude higher than CL intensity from the untreated oxide. α-Fe_2O_3 nanostructures with different morphologies (wires, belts, rods, urchins) were grown at different temperatures on Fe substrates. CL spectra of these nanostructures show emission bands related to charge transfer and ligand field transitions
Stoichiometric tungsten oxide (WO3) nanorods are synthesized on tungsten ( W) substrates by a high- ...
Tungsten-oxide and molybdenum-oxide nanostructures are fabricated directly from the surfaces of meta...
Abstractα-Fe2O3nanowires (NWs) were formed by the thermal oxidation of an iron film in air at 3...
AbstractTungsten oxide (WO3) nanorods array prepared using chemical vapor deposition techniques was ...
Non-fully oxidized tungsten oxide (WO3-x) nanostructures with controllable morphology were fabricate...
Tunsten oxide nanorods are grown on mica substrate in air from WO3 vapor at 590 °C. They are epitax...
We present the synthesis of three-dimensional tungsten oxide (WO3 − x) nanostructures, called nanoca...
Branched α-BiO nanowires decorated with MoO nanoplates have been grown by a two–step sequential evap...
α-Fe_2O_3 (hematite) nanostructures with various morphologies have been grown by thermal oxidation o...
Fe2O3-WO3 nanosystems have been grown on metallic Ti substrates by a hybrid chemical vapor depositio...
Si(100)-supported Fe2O3 nanomaterials were developed by a chemical vapor deposition (CVD) approach. ...
The scientific study described in this thesis aims to achieve understanding of the thermal behavior ...
In the present study, Fe as a catalyst was used to grow single crystalline monoclinic gallium oxide ...
Nanowires (NWs) of metal oxides (Fe2O3, CuO, V2O5 and ZnO) were grown by an efficient non-catalytic ...
The cathodoluminescence (CL) upon electron excitation of the Ga2O3 nanoribbons and nanowires was cha...
Stoichiometric tungsten oxide (WO3) nanorods are synthesized on tungsten ( W) substrates by a high- ...
Tungsten-oxide and molybdenum-oxide nanostructures are fabricated directly from the surfaces of meta...
Abstractα-Fe2O3nanowires (NWs) were formed by the thermal oxidation of an iron film in air at 3...
AbstractTungsten oxide (WO3) nanorods array prepared using chemical vapor deposition techniques was ...
Non-fully oxidized tungsten oxide (WO3-x) nanostructures with controllable morphology were fabricate...
Tunsten oxide nanorods are grown on mica substrate in air from WO3 vapor at 590 °C. They are epitax...
We present the synthesis of three-dimensional tungsten oxide (WO3 − x) nanostructures, called nanoca...
Branched α-BiO nanowires decorated with MoO nanoplates have been grown by a two–step sequential evap...
α-Fe_2O_3 (hematite) nanostructures with various morphologies have been grown by thermal oxidation o...
Fe2O3-WO3 nanosystems have been grown on metallic Ti substrates by a hybrid chemical vapor depositio...
Si(100)-supported Fe2O3 nanomaterials were developed by a chemical vapor deposition (CVD) approach. ...
The scientific study described in this thesis aims to achieve understanding of the thermal behavior ...
In the present study, Fe as a catalyst was used to grow single crystalline monoclinic gallium oxide ...
Nanowires (NWs) of metal oxides (Fe2O3, CuO, V2O5 and ZnO) were grown by an efficient non-catalytic ...
The cathodoluminescence (CL) upon electron excitation of the Ga2O3 nanoribbons and nanowires was cha...
Stoichiometric tungsten oxide (WO3) nanorods are synthesized on tungsten ( W) substrates by a high- ...
Tungsten-oxide and molybdenum-oxide nanostructures are fabricated directly from the surfaces of meta...
Abstractα-Fe2O3nanowires (NWs) were formed by the thermal oxidation of an iron film in air at 3...