Thin films of titanium dioxide are deposited on gas-sensor substrates at 450?degrees C from the aerosol-assisted (AA)CVD of titanium isopropoxide solutions in toluene under the influence of electric fields. Electric fields are generated by applying a potential difference between the inter-digitated electrodes of the gas-sensor substrate during the deposition. The deposited films are analyzed and characterized using scanning electron microscopy (SEM), X-ray diffraction (XRD), and Raman spectroscopy (RS). It is found that an increase in electric field strength during deposition causes changes in the film microstructure, preferential orientation, and growth rate. The gas-sensor properties of the films are also examined. It is found that applyi...
Among metal-oxide gas sensors which change electrical resistive properties upon exposure to target g...
A new atmospheric pressure plasma electrolytic deposition process has been developed for the product...
Microfabricated gas sensors utilizing ultrathin platinum transducing films offer great promise for m...
Thin films of titanium dioxide are deposited on gas-sensor substrates at 450 °C from the aerosol-ass...
Thin films of anatase titanium dioxide are deposited on fluorine-doped tin oxide (FTO) glass substra...
Thin films of anatase titanium dioxide are deposited on fluorine-doped tin oxide (FTO) glass substra...
Nanostructured thin films of tungsten, vanadium and titanium oxides were deposited on gas sensor sub...
Titanium dioxide thin films were deposited from the aerosol assisted chemical vapor deposition react...
Nanostructured thin films of tungsten trioxide were deposited on to gas sensor substrates at 600 °C ...
Thin films of vanadium dioxide were deposited using a novel electric field assisted chemical vapor d...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
Ti O 2 thin films were prepared by spray pyrolysis using a solution of titanium tetrachloride and et...
We developed and tested gas sensing devices based on TiO/sub 2/ nano-crystalline films produced at r...
Titanium dioxide (TiO2) thin films were prepared by means of Anodic Spark Deposition (ASD) from thin...
Thermochromic vanadium dioxide thin films were deposited via aerosol assisted chemical vapour deposi...
Among metal-oxide gas sensors which change electrical resistive properties upon exposure to target g...
A new atmospheric pressure plasma electrolytic deposition process has been developed for the product...
Microfabricated gas sensors utilizing ultrathin platinum transducing films offer great promise for m...
Thin films of titanium dioxide are deposited on gas-sensor substrates at 450 °C from the aerosol-ass...
Thin films of anatase titanium dioxide are deposited on fluorine-doped tin oxide (FTO) glass substra...
Thin films of anatase titanium dioxide are deposited on fluorine-doped tin oxide (FTO) glass substra...
Nanostructured thin films of tungsten, vanadium and titanium oxides were deposited on gas sensor sub...
Titanium dioxide thin films were deposited from the aerosol assisted chemical vapor deposition react...
Nanostructured thin films of tungsten trioxide were deposited on to gas sensor substrates at 600 °C ...
Thin films of vanadium dioxide were deposited using a novel electric field assisted chemical vapor d...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
Ti O 2 thin films were prepared by spray pyrolysis using a solution of titanium tetrachloride and et...
We developed and tested gas sensing devices based on TiO/sub 2/ nano-crystalline films produced at r...
Titanium dioxide (TiO2) thin films were prepared by means of Anodic Spark Deposition (ASD) from thin...
Thermochromic vanadium dioxide thin films were deposited via aerosol assisted chemical vapour deposi...
Among metal-oxide gas sensors which change electrical resistive properties upon exposure to target g...
A new atmospheric pressure plasma electrolytic deposition process has been developed for the product...
Microfabricated gas sensors utilizing ultrathin platinum transducing films offer great promise for m...