AbstractGas sensing properties of Co-oxide thin films were investigated and modelled. The films of cubic Co3O4 structure and with thickness between 20-150 nm were fabricated by pulsed laser deposition. The response of dc-conductivity to different gases (CO, NO2, CH4) was tested at temperatures 240 - 400 °C, and at different oxygen pressures. The conductivity changes due to O2 and due to test gas were found to be almost independent. The commonly used ionosorption model, which assumes reactions with adsorbed oxygen ions, failed to describe the dataset obtained at different CO and O2 pressures. Alternative mechanisms are discussed
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
AbstractGas sensing properties of Co-oxide thin films were investigated and modelled. The films of c...
The gas sensing properties of Co3O4 and Co3O4:Y nano structures were investigated. The films were sy...
AbstractWe present resistive gas responses of tin oxide thin films prepared by large-area pulsed las...
Selective detection of gases such as nitrogen dioxide (NO2), carbon monoxide (CO), carbon dioxide (C...
Ultrathin tin oxide films were deposited on SiO2 nanoparticles using atomic layer deposition (ALD) t...
International audienceThe normal cubic spinel Co3O4 () is the most stable crystalline cobalt oxide a...
A modified sol–gel method was used to prepare cobalt doped silica thin film with a cobalt content of...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
Promising results on the behavior of CuO/CuFe2O4sputtered thin films as a sensing material under car...
Nanocrystalline cobalt oxide Co3O4 has been prepared by precipitation and subsequent thermal decompo...
Increasing concern regarding health effects caused by air pollution, together with the limited spati...
In this study tin oxide thin film is deposited on glass substrate by Thermal Evaporation technique f...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...
AbstractGas sensing properties of Co-oxide thin films were investigated and modelled. The films of c...
The gas sensing properties of Co3O4 and Co3O4:Y nano structures were investigated. The films were sy...
AbstractWe present resistive gas responses of tin oxide thin films prepared by large-area pulsed las...
Selective detection of gases such as nitrogen dioxide (NO2), carbon monoxide (CO), carbon dioxide (C...
Ultrathin tin oxide films were deposited on SiO2 nanoparticles using atomic layer deposition (ALD) t...
International audienceThe normal cubic spinel Co3O4 () is the most stable crystalline cobalt oxide a...
A modified sol–gel method was used to prepare cobalt doped silica thin film with a cobalt content of...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
Promising results on the behavior of CuO/CuFe2O4sputtered thin films as a sensing material under car...
Nanocrystalline cobalt oxide Co3O4 has been prepared by precipitation and subsequent thermal decompo...
Increasing concern regarding health effects caused by air pollution, together with the limited spati...
In this study tin oxide thin film is deposited on glass substrate by Thermal Evaporation technique f...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Thin film nanostructured gas sensors typically operate at temperatures above 400°C, but lower temper...