A new generation of solid state sensors based on nanocrystalline BaTiO3 films containing various semiconducting oxides has been developed. The sensors were fabricated from BaTiO3 based nanopowder mixtures using thick film technology and were characterized regarding their CO2-gas sensitivity at different operation temperatures and gas environments. It was found that the sensors operate over a wide range of CO2 concentrations. Interfering gases have only minor effects on the sensor response. By using miniaturized Al2O3-substrates as carriers for the sensitive nanocrystalline layer a significant decrease of the power and powder consumption for each sensor was achieved
A barium titanate thin film was deposited by drop coating for carbon dioxide detection. The measurem...
International audienceIn view to develop gas sensors, a first generation of lead-free thin films was...
In the last decades, nanomaterials have emerged as multifunctional building blocks for the developme...
International audienceIn this work, we report on a new evaluation of metal oxide based on carbon dio...
A low-cost CO2 sensor in thick film technology has been developed using BaTiO3 and various semicondu...
International audienceA new approach for thin layer deposition to elaborate CO 2 sensitive layers is...
A gas sensor for detection of oxidizing and reducing gases, including O2, CO2, CO, and H2, monitors ...
Increasing concern regarding health effects caused by air pollution, together with the limited spati...
Nanosized titania thick and thin films were produced and shown to possess sensing capability. Correl...
In the last three decades along with growing industries and development of cities,many pollutants ha...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
This article gives an overview on recent developments in metal-oxide-based gas sensor systems, in pa...
International audienceMetal Oxide Sensors are promising for gas detection but only a few studies abo...
We have prepared SrTiO 3/BaTiO 3 multilayer film on alumina substrates by a sol-gel technique and in...
A barium titanate thin film was deposited by drop coating for carbon dioxide detection. The measurem...
International audienceIn view to develop gas sensors, a first generation of lead-free thin films was...
In the last decades, nanomaterials have emerged as multifunctional building blocks for the developme...
International audienceIn this work, we report on a new evaluation of metal oxide based on carbon dio...
A low-cost CO2 sensor in thick film technology has been developed using BaTiO3 and various semicondu...
International audienceA new approach for thin layer deposition to elaborate CO 2 sensitive layers is...
A gas sensor for detection of oxidizing and reducing gases, including O2, CO2, CO, and H2, monitors ...
Increasing concern regarding health effects caused by air pollution, together with the limited spati...
Nanosized titania thick and thin films were produced and shown to possess sensing capability. Correl...
In the last three decades along with growing industries and development of cities,many pollutants ha...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
This article gives an overview on recent developments in metal-oxide-based gas sensor systems, in pa...
International audienceMetal Oxide Sensors are promising for gas detection but only a few studies abo...
We have prepared SrTiO 3/BaTiO 3 multilayer film on alumina substrates by a sol-gel technique and in...
A barium titanate thin film was deposited by drop coating for carbon dioxide detection. The measurem...
International audienceIn view to develop gas sensors, a first generation of lead-free thin films was...
In the last decades, nanomaterials have emerged as multifunctional building blocks for the developme...