There is need for reliable, low cost detectors to continuously monitor the air quality in presence of hazardous gases, harmful for human health. In this work we demonstrate how the use of different type of metal oxide one-dimensional sensors based on ZnO and SnO 2 could provide high sensing capabilities together with differentiated responses to gases. The sensors can then be used together into a cost-effective portable sensor systems for quantitative detection of harmful emissions and contaminations. The gases tested in the present work are H 2 a highly explosive gas (4% is the lower explosion limit), H 2 S, one of the principal compounds involved in the natural cycle of sulphur in the environment, and DMMP, a simulant of the nerve agent Sa...
Gas sensors based on the multi-sensor platform MSP 632, with thin nanocomposite films based on tin d...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
Designing nanostructured materials to enhance gas-sensing performance is a key objective for sensor ...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
Detection of toxic gases such as hydrogen sulfide (H₂S) at low temperatures is of high importance ...
ZnO is worth evaluating for chemical sensing due to its outstanding physical and chemical properties...
There is an increasing interest among researchers of environmental sensors to improve the functional...
This contribution focuses on ZnO-based gas sensors with outstanding performances in the detection of...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
This contribution focuses on ZnO-based gas sensors with outstanding performances in the detection of...
Gas sensors based on the multi-sensor platform MSP 632, with thin nanocomposite films based on tin d...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
Designing nanostructured materials to enhance gas-sensing performance is a key objective for sensor ...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
There is need for reliable, low cost detectors to continuously monitor the air quality in presence o...
Detection of toxic gases such as hydrogen sulfide (H₂S) at low temperatures is of high importance ...
ZnO is worth evaluating for chemical sensing due to its outstanding physical and chemical properties...
There is an increasing interest among researchers of environmental sensors to improve the functional...
This contribution focuses on ZnO-based gas sensors with outstanding performances in the detection of...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
This contribution focuses on ZnO-based gas sensors with outstanding performances in the detection of...
Gas sensors based on the multi-sensor platform MSP 632, with thin nanocomposite films based on tin d...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
Designing nanostructured materials to enhance gas-sensing performance is a key objective for sensor ...