International audienceA reproducible organometallic approach was used in order to prepare zinc oxide gas sensitive layers. Various ZnO nanostructures with well-defined morphology were prepared by controlled hydrolysis of suitable organometallic precursor. These nanomaterials were deposited on miniaturized gas sensors substrates by an ink-jet method. The as prepared devices were tested towards different reducing gases, namely: CO, C3H8, and NH3. We showed that the morphology of these nanostructures significantly influences the sensor response level and selectivity to the reducing gases
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...
International audienceA reproducible organometallic approach was used in order to prepare zinc oxide...
International audienceA reproducible organometallic approach was used in order to prepare zinc oxide...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...
International audienceA reproducible organometallic approach was used in order to prepare zinc oxide...
International audienceA reproducible organometallic approach was used in order to prepare zinc oxide...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...