WO3 precursor solutions were prepared by methanolysis of WCl6 in presence of acetylacetone as a stabilizer. Chromium addition was achieved by mixing Cr 2-ethylhexanoate with the pure solutions, with Cr: W atomic concentrations ranging from 2% to 22%. Powders were prepared by drying the solutions and heat-treating the product up to 700 °C. After heat-treating at 400 °C, crystalline WO3 was obtained, and X-ray diffraction and Transmission Electron Microscopy showed that the powders were constituted by a mixture of the WO3 monoclinic and triclinic crystallographic phases. The Cr-modified samples, with a Cr concentration of at least 5%, presented the additional phase Cr2WO6. Structural investigations suggested that this phase was favored instea...
Tungsten oxide (WO3) powders were obtained in this work by both wet chemical synthesis and homogeneo...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
We report on the surface interaction between NH3 and WO3 nanoparticles having different exposed surf...
WO3 and Cr-WO3 powders were prepared by sol-gel process, with Cr:W atomic concentration ranging from...
Macroporous WO3 films with inverted opal structure were synthesized by one-step procedure, which inv...
WO3·2H2O samples were prepared by acidic precipitation of sodium tungstate solution. Nanocrystalline...
Mesoporous Cr or Pt-doped WO(3) thin films to be employed as ammonia gas sensors were prepared by a ...
Ammonia gas detection by pure and catalytically modified WO3 based gas sensor was analysed. The sens...
In this paper, a simple way is developed for the synthesis of Cr-doped WO3 polyhedra controlled by...
This doctoral dissertation deals with the study of nanocrystalline tungsten oxide-based powders for ...
Different synthetical routes involving several solvents for obtaining WO3powders, suitable for gas s...
WO3-based materials as sensors for the monitor of environmental gases such as NOx (NO+NO2) have been...
Tungsten trioxide (WO3) is taking on an increasing level of importance as an active material for che...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
WO3-based materials as sensors for the monitor of environmental gases such as NO2 (NO + NO2) have be...
Tungsten oxide (WO3) powders were obtained in this work by both wet chemical synthesis and homogeneo...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
We report on the surface interaction between NH3 and WO3 nanoparticles having different exposed surf...
WO3 and Cr-WO3 powders were prepared by sol-gel process, with Cr:W atomic concentration ranging from...
Macroporous WO3 films with inverted opal structure were synthesized by one-step procedure, which inv...
WO3·2H2O samples were prepared by acidic precipitation of sodium tungstate solution. Nanocrystalline...
Mesoporous Cr or Pt-doped WO(3) thin films to be employed as ammonia gas sensors were prepared by a ...
Ammonia gas detection by pure and catalytically modified WO3 based gas sensor was analysed. The sens...
In this paper, a simple way is developed for the synthesis of Cr-doped WO3 polyhedra controlled by...
This doctoral dissertation deals with the study of nanocrystalline tungsten oxide-based powders for ...
Different synthetical routes involving several solvents for obtaining WO3powders, suitable for gas s...
WO3-based materials as sensors for the monitor of environmental gases such as NOx (NO+NO2) have been...
Tungsten trioxide (WO3) is taking on an increasing level of importance as an active material for che...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
WO3-based materials as sensors for the monitor of environmental gases such as NO2 (NO + NO2) have be...
Tungsten oxide (WO3) powders were obtained in this work by both wet chemical synthesis and homogeneo...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
We report on the surface interaction between NH3 and WO3 nanoparticles having different exposed surf...