Gas microsensors based on ZnO structures grown via aerosol-assisted chemical vapor deposition are fabricated. The photoactivated and thermoactivated gas sensing properties of these systems toward CO are presented. Results demonstrate photoactivated responses at room temperature with improved characteristics, which include 35 % higher response and 7% faster response times, compared to the thermoactivated response of the sensors at 250 °C. This characteristic becomes significantly advantageous as it allows for the sensor to operate without integrated heaters minimizing the power consumption of the system
In this paper a novel type of a highly sensitive gas sensor device based on the surface photovoltage...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
A new-concept approach to room temperature magnetic gas sensing has been developed, based on newly d...
In this paper, we report an on-chip gas sensor based on novel zinc oxide (ZnO) nanocombs for carbon ...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Zinc oxide (ZnO) is a low-toxicity and environmentally-friendly material applied on devices, sensors...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Room temperature operation is an extremely valuable goal in gas sensing research. Among the metal-ox...
Excellent sensing performance for CO gas is demonstrated using inexpensive sensor devices based on h...
Miniaturized gas sensors are increasingly important to monitor the quality of air in a wide range of...
In this report, the thickness-dependent carbon monooxide (CO)-sensing characteristics of sputtered z...
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
Zinc Oxide has been widely investigated for its photocatalytic properties, which enhance the bulk/su...
Ultrafast detection of dynamic variations in the carbon dioxide (CO2) gas concentration with good se...
In this paper a novel type of a highly sensitive gas sensor device based on the surface photovoltage...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
A new-concept approach to room temperature magnetic gas sensing has been developed, based on newly d...
In this paper, we report an on-chip gas sensor based on novel zinc oxide (ZnO) nanocombs for carbon ...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Zinc oxide (ZnO) is a low-toxicity and environmentally-friendly material applied on devices, sensors...
Ultralow-power gas sensing devices need to operate without an energy consuming heater element. This ...
Room temperature operation is an extremely valuable goal in gas sensing research. Among the metal-ox...
Excellent sensing performance for CO gas is demonstrated using inexpensive sensor devices based on h...
Miniaturized gas sensors are increasingly important to monitor the quality of air in a wide range of...
In this report, the thickness-dependent carbon monooxide (CO)-sensing characteristics of sputtered z...
International audienceSemiconductor gas sensors can be widely used in food industry and agriculture....
Zinc Oxide has been widely investigated for its photocatalytic properties, which enhance the bulk/su...
Ultrafast detection of dynamic variations in the carbon dioxide (CO2) gas concentration with good se...
In this paper a novel type of a highly sensitive gas sensor device based on the surface photovoltage...
International audienceZnO nanoparticles (NP) with different morphologies such as nanorods (NR), isot...
A new-concept approach to room temperature magnetic gas sensing has been developed, based on newly d...