WO3 is a commonly used material for gas sensing. Although a great deal of research has been done on how to tune sensors based on WO3, no clear consensus exists on what characteristics are inherent to the metal oxide: This work looks at six different WO3 samples and aims to identify which characteristics are common to all materials. Specifically, the interaction of the samples with humidity is examined
Tungsten oxide (WO3) powders were obtained in this work by both wet chemical synthesis and homogeneo...
WO3-based materials as sensors for the monitor of environmental gases such as NOx (NO+NO2) have been...
Abstract The effect of WO3 nano-crystal characteristic size and layer morphology on gas sensitive pr...
Gas sensors have been extensively developed in biology, chemistry, aeronautics, military affairs. WO...
Tungsten trioxide (WO3) is taking on an increasing level of importance as an active material for che...
Tungsten trioxide is the second most commonly used semiconducting metal oxide in gas sensors. Semico...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
This study investigates the sensitivity of a gas sensor to volatile organic compounds (VOCs) at vari...
Tungsten trioxide (WO3) was grown by direct thermal evaporation of metal tungsten foils in an oxygen...
The electrical properties of semiconducting oxides have been widely studied and employed in gas sens...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
Ammonia gas detection by pure and catalytically modified WO3 based gas sensor was analysed. The sens...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
International audienceThe mixed oxide W0.9Mo0.1O3 responds sensitively to oxidizing gases such as oz...
This doctoral dissertation deals with the study of nanocrystalline tungsten oxide-based powders for ...
Tungsten oxide (WO3) powders were obtained in this work by both wet chemical synthesis and homogeneo...
WO3-based materials as sensors for the monitor of environmental gases such as NOx (NO+NO2) have been...
Abstract The effect of WO3 nano-crystal characteristic size and layer morphology on gas sensitive pr...
Gas sensors have been extensively developed in biology, chemistry, aeronautics, military affairs. WO...
Tungsten trioxide (WO3) is taking on an increasing level of importance as an active material for che...
Tungsten trioxide is the second most commonly used semiconducting metal oxide in gas sensors. Semico...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
This study investigates the sensitivity of a gas sensor to volatile organic compounds (VOCs) at vari...
Tungsten trioxide (WO3) was grown by direct thermal evaporation of metal tungsten foils in an oxygen...
The electrical properties of semiconducting oxides have been widely studied and employed in gas sens...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
Ammonia gas detection by pure and catalytically modified WO3 based gas sensor was analysed. The sens...
The work investigated in this paper focused on the fabrication of WO3 films by the spray pyrolysis t...
International audienceThe mixed oxide W0.9Mo0.1O3 responds sensitively to oxidizing gases such as oz...
This doctoral dissertation deals with the study of nanocrystalline tungsten oxide-based powders for ...
Tungsten oxide (WO3) powders were obtained in this work by both wet chemical synthesis and homogeneo...
WO3-based materials as sensors for the monitor of environmental gases such as NOx (NO+NO2) have been...
Abstract The effect of WO3 nano-crystal characteristic size and layer morphology on gas sensitive pr...