Layered surface acoustic wave (SAW) devices are investigated for sensing hydrogen (H-2) concentrations less than 1% in air. Platinum (Pt) and gold (An) catalyst activated tungsten trioxide (WO3) selective layers are investigated. The SAW sensors consist of two thin film metal interdigital transducers (IDTs) on a 36 degrees Y-cut, X-propagating LiTaO3 substrate. A ZnO guiding layer is used to confine the acoustic energy at the active surface of the device for increased sensitivity. In this paper, the fabrication of an Au-WO3 and a Pt-WO3 based layered SAW device are described. The sensor response have been analysed in terms of frequency shift as a function of different hydrogen concentrations and operating temperatures. The responses of the ...
Layered Surface Acoustic Wave (SAW) devices with an In0,1SiNJ36° YX LiTa03 structure were investigat...
International audienceBecause of its physicochemical properties, hydrogen appears as an efficient so...
Abstract — A zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) sensor has been developed an...
A layered Surface Acoustic Wave (SAW) hydrogen gas sensor, based on a delay line structure with 64 f...
A comparison between the performance of conductometric and layered surface acoustic wave (SAW) hydro...
In the paper a new sensor structure for surface acoustic wave gas system is presented. A bilayer str...
The effect of nanostructure of PLD (Pulsed Laser Deposition)-deposited Pd/WO3 sensing films on room ...
Layered Surface Acoustic Wave (SAW) devices are of enormous interest for liquid and gas sensing appl...
Ethanol sensing in dry and humid air by layered surface acoustic wave (SAW) devices is presented. Th...
This thesis addresses the development of new gas sensor using surface acoustic wave (SAW) technology...
International audienceThe nanostructured palladium–platinum (PdPt) catalyst and the Surface Acoustic...
AbstractBi-layer nanostructures of WO3 (∼100 nm and 150 nm) with a very thin film of palladium (Pd∼1...
A delay-line-type surface acoustic wave (SAW) sensor based on a zinc oxide (ZnO) sensitive layer was...
Pd/SnO2 bilayers for surface acoustic wave (SAW) sensors were obtained using pulsed laser deposition...
AbstractHere we report on a layered Surface Acoustic Wave (SAW) gas sensor featuring polyethylanilin...
Layered Surface Acoustic Wave (SAW) devices with an In0,1SiNJ36° YX LiTa03 structure were investigat...
International audienceBecause of its physicochemical properties, hydrogen appears as an efficient so...
Abstract — A zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) sensor has been developed an...
A layered Surface Acoustic Wave (SAW) hydrogen gas sensor, based on a delay line structure with 64 f...
A comparison between the performance of conductometric and layered surface acoustic wave (SAW) hydro...
In the paper a new sensor structure for surface acoustic wave gas system is presented. A bilayer str...
The effect of nanostructure of PLD (Pulsed Laser Deposition)-deposited Pd/WO3 sensing films on room ...
Layered Surface Acoustic Wave (SAW) devices are of enormous interest for liquid and gas sensing appl...
Ethanol sensing in dry and humid air by layered surface acoustic wave (SAW) devices is presented. Th...
This thesis addresses the development of new gas sensor using surface acoustic wave (SAW) technology...
International audienceThe nanostructured palladium–platinum (PdPt) catalyst and the Surface Acoustic...
AbstractBi-layer nanostructures of WO3 (∼100 nm and 150 nm) with a very thin film of palladium (Pd∼1...
A delay-line-type surface acoustic wave (SAW) sensor based on a zinc oxide (ZnO) sensitive layer was...
Pd/SnO2 bilayers for surface acoustic wave (SAW) sensors were obtained using pulsed laser deposition...
AbstractHere we report on a layered Surface Acoustic Wave (SAW) gas sensor featuring polyethylanilin...
Layered Surface Acoustic Wave (SAW) devices with an In0,1SiNJ36° YX LiTa03 structure were investigat...
International audienceBecause of its physicochemical properties, hydrogen appears as an efficient so...
Abstract — A zinc oxide (ZnO) nanorod based surface acoustic wave (SAW) sensor has been developed an...