A new room temperature supra-molecular cryptophane A (CrypA)-coated surface acoustic wave (SAW) sensor for sensing methane gas is presented. The sensor is composed of differential resonator-oscillators, a supra-molecular CrypA coated along the acoustic propagation path, and a frequency signal acquisition module (FSAM). A two-port SAW resonator configuration with low insertion loss, single resonation mode, and high quality factor was designed on a temperature-compensated ST-X quartz substrate, and as the feedback of the differntial oscillators. Prior to development, the coupling of modes (COM) simulation was conducted to predict the device performance. The supramolecular CrypA was synthesized from vanillyl alcohol using a double trimerisatio...
Abstract—This paper reports upon the design and development of a low cost, high sensitivity, high fr...
Support IFCPAR/CEFIPRAInternational audienceAs previously presented, Surface Acoustic Wave or SAW-ba...
International audienceIn this work, we show the capabilities of Surface Acoustic Wave (SAW) devices ...
A new room temperature supra-molecular cryptophane A (CrypA)-coated surface acoustic wave (SAW) sens...
A Love wave-based sensing chip incorporating a supramolecular cryptophane A (CrypA) thin film was pr...
A double SAW resonator system was developed as a novel method for gas sensing applications. The prop...
This thesis addresses the development of new gas sensor using surface acoustic wave (SAW) technology...
Acoustic wave technology has been used for gas sensing applications for several decades. A SAW devic...
We have investigated chemical sensing properties of three polymeric films (organic and organometalli...
Surface acoustic wave (SAW) resonators represent some of the most prominent acoustic devices for che...
A new wireless and passive surface acoustic wave (SAW)-based chemical sensor for organophosphorous c...
[[abstract]]Surface acoustic wave sensors are famous for its low cost, high resolution, and quick re...
This dissertation presents the design of a unique prototype chemical agent detector which utilizes a...
The response of a surface acoustic wave (SAW) device towards relative humidity (RH) variations in th...
Abstract—This paper reports upon the design and development of a low cost, high sensitivity, high fr...
Support IFCPAR/CEFIPRAInternational audienceAs previously presented, Surface Acoustic Wave or SAW-ba...
International audienceIn this work, we show the capabilities of Surface Acoustic Wave (SAW) devices ...
A new room temperature supra-molecular cryptophane A (CrypA)-coated surface acoustic wave (SAW) sens...
A Love wave-based sensing chip incorporating a supramolecular cryptophane A (CrypA) thin film was pr...
A double SAW resonator system was developed as a novel method for gas sensing applications. The prop...
This thesis addresses the development of new gas sensor using surface acoustic wave (SAW) technology...
Acoustic wave technology has been used for gas sensing applications for several decades. A SAW devic...
We have investigated chemical sensing properties of three polymeric films (organic and organometalli...
Surface acoustic wave (SAW) resonators represent some of the most prominent acoustic devices for che...
A new wireless and passive surface acoustic wave (SAW)-based chemical sensor for organophosphorous c...
[[abstract]]Surface acoustic wave sensors are famous for its low cost, high resolution, and quick re...
This dissertation presents the design of a unique prototype chemical agent detector which utilizes a...
The response of a surface acoustic wave (SAW) device towards relative humidity (RH) variations in th...
Abstract—This paper reports upon the design and development of a low cost, high sensitivity, high fr...
Support IFCPAR/CEFIPRAInternational audienceAs previously presented, Surface Acoustic Wave or SAW-ba...
International audienceIn this work, we show the capabilities of Surface Acoustic Wave (SAW) devices ...