AbstractThis work summarizes the preparation of two dimensional WO3 nanostructures by hydrothermal method and their NO2 sensing characterization in the ppb level (90-310 ppb). WO3 ultra-thin nanoplates with 100nm of lateral size and about 10nm of thickness were synthesized and characterized. Hydrothermal treatment (180°C, 48hours) was carried out on tungstic acid which obtained by direct precipitation of sodium tungstate dihydrate in hydrochloric acid. The morphology of the obtained WO3 was observed by SEM and TEM and their crystal structures were determined by X-ray diffraction (XRD). Thick films (∼ 5μm and 20μm) of the synthesized WO3 were prepared by screen-printing, the NO2 sensing characterizations of the sensors in the ppb level (90-3...
In this work, WO3 nanosheets were synthesised and decorated with different percentages of N-GO nanoc...
Hexagonal WO3 nanorods and orthorhombic WO3 nanoparticles were prepared by a simple hydrothermal met...
Abstract Nanostructured WO3 represents a promising material for fast and reliable molecular hydrogen...
AbstractThis work summarizes the preparation of two dimensional WO3 nanostructures by hydrothermal m...
This study shows excellent NO2-sensing properties of tungsten oxide nanoparticles, prepared using a ...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
Tungsten oxide nano - powders were prepared by acidic precipitation from so dium tungstate solu...
AbstractTo fabricate more excellent NO2 sensor with high sensor response and good linearity between ...
Tungsten trioxide (W03) nanoplatelets were obtained by etching sputtered W thin films in a 0.5M nitr...
We report the synthesis of tungsten oxide (WO3) nanosheets using a simple yet efficient hydrothermal...
WO3 nanocrystalline powders were obtained from tungstic acid following a sol-gel process. Evolution ...
Here we describe a two-step aerosol-assisted chemical vapor deposition (AACVD) synthesis method for ...
AbstractA gas sensitive nanoporous tungsten trioxide sensor produce by an anodization process is pre...
In this paper two kind of sensors based on WO3 sputtered by magnetron sputtering and annealed at 600...
In this work, WO3 nanosheets were synthesised and decorated with different percentages of N-GO nanoc...
Hexagonal WO3 nanorods and orthorhombic WO3 nanoparticles were prepared by a simple hydrothermal met...
Abstract Nanostructured WO3 represents a promising material for fast and reliable molecular hydrogen...
AbstractThis work summarizes the preparation of two dimensional WO3 nanostructures by hydrothermal m...
This study shows excellent NO2-sensing properties of tungsten oxide nanoparticles, prepared using a ...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
Tungsten oxide nano - powders were prepared by acidic precipitation from so dium tungstate solu...
AbstractTo fabricate more excellent NO2 sensor with high sensor response and good linearity between ...
Tungsten trioxide (W03) nanoplatelets were obtained by etching sputtered W thin films in a 0.5M nitr...
We report the synthesis of tungsten oxide (WO3) nanosheets using a simple yet efficient hydrothermal...
WO3 nanocrystalline powders were obtained from tungstic acid following a sol-gel process. Evolution ...
Here we describe a two-step aerosol-assisted chemical vapor deposition (AACVD) synthesis method for ...
AbstractA gas sensitive nanoporous tungsten trioxide sensor produce by an anodization process is pre...
In this paper two kind of sensors based on WO3 sputtered by magnetron sputtering and annealed at 600...
In this work, WO3 nanosheets were synthesised and decorated with different percentages of N-GO nanoc...
Hexagonal WO3 nanorods and orthorhombic WO3 nanoparticles were prepared by a simple hydrothermal met...
Abstract Nanostructured WO3 represents a promising material for fast and reliable molecular hydrogen...