Nanostructured thin films of tungsten trioxide were deposited on to gas sensor substrates at 600 °C from the aerosol assisted chemical vapour deposition reaction of tungsten hexaphenoxide solutions in toluene under the influence of electric fields. The electric fields were generated by applying a potential difference between the inter-digitated electrodes of the gas sensor substrates during the deposition. The deposited films were characterised using scanning electron microscopy, X-ray diffraction and Raman spectroscopy. The application of an electric field, encouraged formation of enhanced nanostructured morphologies, with an increase in needle length and reduction in needle diameter being observed. The film gas sensor properties were also...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
The properties of the most important semiconductor oxides for gas sensing, such as SnO2, TiO2, WO3 a...
Tungsten trioxide (WO3) nanowires decorated with iridium oxide nanoparticles (WO3-IrO2) have been st...
Nanostructured thin films of tungsten, vanadium and titanium oxides were deposited on gas sensor sub...
Thin films of vanadium dioxide were deposited using a novel electric field assisted chemical vapor d...
Thin films of titanium dioxide are deposited on gas-sensor substrates at 450 °C from the aerosol-ass...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
Thin films of titanium dioxide are deposited on gas-sensor substrates at 450?degrees C from the aero...
AbstractThe aerosol assisted chemical vapor deposition of Fe2O3 nanoparticle-functionalized tungsten...
In this work we report on the preparation by Pulsed Laser Deposition (PLD) of tungsten oxide layers ...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Abstract Tungsten oxide nanowires have been synthetized by a simple thermal oxidation route in an ox...
AbstractWe report the co-deposition, in a single step, of metal nanoparticles and tungsten oxide nan...
Among the available metal oxide nanostructures, tungsten oxide has remained, at times, troublesome t...
A gas sensitive nanoporous tungsten trioxide sensor produce by an anodization process is presented. ...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
The properties of the most important semiconductor oxides for gas sensing, such as SnO2, TiO2, WO3 a...
Tungsten trioxide (WO3) nanowires decorated with iridium oxide nanoparticles (WO3-IrO2) have been st...
Nanostructured thin films of tungsten, vanadium and titanium oxides were deposited on gas sensor sub...
Thin films of vanadium dioxide were deposited using a novel electric field assisted chemical vapor d...
Thin films of titanium dioxide are deposited on gas-sensor substrates at 450 °C from the aerosol-ass...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
Thin films of titanium dioxide are deposited on gas-sensor substrates at 450?degrees C from the aero...
AbstractThe aerosol assisted chemical vapor deposition of Fe2O3 nanoparticle-functionalized tungsten...
In this work we report on the preparation by Pulsed Laser Deposition (PLD) of tungsten oxide layers ...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Abstract Tungsten oxide nanowires have been synthetized by a simple thermal oxidation route in an ox...
AbstractWe report the co-deposition, in a single step, of metal nanoparticles and tungsten oxide nan...
Among the available metal oxide nanostructures, tungsten oxide has remained, at times, troublesome t...
A gas sensitive nanoporous tungsten trioxide sensor produce by an anodization process is presented. ...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
The properties of the most important semiconductor oxides for gas sensing, such as SnO2, TiO2, WO3 a...
Tungsten trioxide (WO3) nanowires decorated with iridium oxide nanoparticles (WO3-IrO2) have been st...