Abstract Tungsten oxide nanowires have been synthetized by a simple thermal oxidation route in an oxygen atmosphere, at low vacuum pressure. The morphology of the nanostructures was investigated by scanning electron microscope (SEM). Chemical sensors were fabricated using tungsten oxide nanowires as active layer, directly deposited on the transducer. Gas sensing performances were evaluated towards some target chemical species (CO, NO2, NH3, Acetone, Ethanol). Firstly, a temperature screening was performed in presence of a fixed gas concentration, to determine the optimal working temperature of the sensors. Then, calibration curves for some chemical species were estimated. The influence of relative humidity was taken into account. Fabricated...
AbstractIn this study metal oxide nanowires were grown by thermal oxidation of metallic thin layer d...
Mimicking the biological olfactory systems that consist of olfactory receptor arrays with large surf...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
AbstractTungsten oxide nanowires have been synthetized by a simple thermal oxidation route in an oxy...
Abstract Tungsten oxide nanowires (NWs) were successfully deposited on the membrane of micro hotplat...
AbstractTungsten oxide nanowires (NWs) were successfully deposited on the membrane of micro hotplate...
Abstract Thin films of tungsten and niobium (WNb) were the starting point for the growth of metal ox...
AbstractThin films of tungsten and niobium (WNb) were the starting point for the growth of metal oxi...
AbstractAerosol assisted CVD (AACVD) is a self-catalyzed method that allows for growing single cryst...
AbstractTungsten trioxide nanowires, nickel oxide nanowires and niobium oxide nanostructures weresyn...
International audienceAmmonia detection at low temperatures below 150 °C is attractive to be well su...
AbstractTungsten trioxide nanowires, nickel oxide nanowires and niobium oxide nanostructures weresyn...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...
Ammonia detection at low temperatures below 150 °C is attractive to be well suited for flexible...
We report the results of composite tungsten oxide nanowires-based gas sensors. The morphologic surfa...
AbstractIn this study metal oxide nanowires were grown by thermal oxidation of metallic thin layer d...
Mimicking the biological olfactory systems that consist of olfactory receptor arrays with large surf...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
AbstractTungsten oxide nanowires have been synthetized by a simple thermal oxidation route in an oxy...
Abstract Tungsten oxide nanowires (NWs) were successfully deposited on the membrane of micro hotplat...
AbstractTungsten oxide nanowires (NWs) were successfully deposited on the membrane of micro hotplate...
Abstract Thin films of tungsten and niobium (WNb) were the starting point for the growth of metal ox...
AbstractThin films of tungsten and niobium (WNb) were the starting point for the growth of metal oxi...
AbstractAerosol assisted CVD (AACVD) is a self-catalyzed method that allows for growing single cryst...
AbstractTungsten trioxide nanowires, nickel oxide nanowires and niobium oxide nanostructures weresyn...
International audienceAmmonia detection at low temperatures below 150 °C is attractive to be well su...
AbstractTungsten trioxide nanowires, nickel oxide nanowires and niobium oxide nanostructures weresyn...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...
Ammonia detection at low temperatures below 150 °C is attractive to be well suited for flexible...
We report the results of composite tungsten oxide nanowires-based gas sensors. The morphologic surfa...
AbstractIn this study metal oxide nanowires were grown by thermal oxidation of metallic thin layer d...
Mimicking the biological olfactory systems that consist of olfactory receptor arrays with large surf...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...