This work presents the fabrication and gas sensing properties of Love wave sensors based on non-modified and gold nanoparticle-modified polypyrrole. Results demonstrate the integration of uniform polypyrrole layers with smooth granular surface and the incorporation of dispersed crystalline gold nanoparticles within the modified layers. Gas sensing tests of the sensors in dry conditions show enhanced sensing performance to ethylene and ammonia for the modified systems as compared to those without modification and those reported in the literature. The effect of humidity proves significant in both systems with the results showing a decrease of sensitivity in humid conditions. Despite this weakness, the relatively facile and scalable fabricatio...
This work aimed at developing new surface acoustic wave (SAW) microsensors capable of detecting trac...
An innovative, simple and inexpensive Love-wave gas sensor based on Fe2O3@WO3−x nanoneedles to detec...
Amorphous titanium dioxide (TiO2) and gold (Au) doped TiO2-based surface acoustic wave (SAW) sensors...
Love-Wave (LW) sensors based on gas sensoitive polypyrrole (PPy) nanparticles (NPs) and their modifi...
Love-wave (LW) sensors based on gas sensitive polypyrrole (PPy) nanoparticles (NPs) and their modifi...
AbstractA highly sensitive, simple and inexpensive Love-wave gas sensor based on surface functionali...
It is crucial to develop highly sensitive and selective sensors for ammonia, one of the most common ...
We present for the first time, to the best of authors' knowledge, surface acoustic wave (SAW) g...
Love-wave gas sensors based on surface functionalized iron oxide nanoparticles has been developed in...
In this paper, the sensitivity of the LiNbO3 surface acoustic wave (SAW) based humidity sensors has...
This thesis addresses the development of new gas sensor using surface acoustic wave (SAW) technology...
ABSTRACT: Sensitivity of polymeric microdisks is evaluated for selected compounds in their vapor pha...
A Love wave-based sensing chip incorporating a supramolecular cryptophane A (CrypA) thin film was pr...
Everyone knows the importance of sensors in our society and the huge attempt to improve their proper...
Les travaux présentés dans ce manuscrit concernent la réalisation et la caractérisation d’un capteur...
This work aimed at developing new surface acoustic wave (SAW) microsensors capable of detecting trac...
An innovative, simple and inexpensive Love-wave gas sensor based on Fe2O3@WO3−x nanoneedles to detec...
Amorphous titanium dioxide (TiO2) and gold (Au) doped TiO2-based surface acoustic wave (SAW) sensors...
Love-Wave (LW) sensors based on gas sensoitive polypyrrole (PPy) nanparticles (NPs) and their modifi...
Love-wave (LW) sensors based on gas sensitive polypyrrole (PPy) nanoparticles (NPs) and their modifi...
AbstractA highly sensitive, simple and inexpensive Love-wave gas sensor based on surface functionali...
It is crucial to develop highly sensitive and selective sensors for ammonia, one of the most common ...
We present for the first time, to the best of authors' knowledge, surface acoustic wave (SAW) g...
Love-wave gas sensors based on surface functionalized iron oxide nanoparticles has been developed in...
In this paper, the sensitivity of the LiNbO3 surface acoustic wave (SAW) based humidity sensors has...
This thesis addresses the development of new gas sensor using surface acoustic wave (SAW) technology...
ABSTRACT: Sensitivity of polymeric microdisks is evaluated for selected compounds in their vapor pha...
A Love wave-based sensing chip incorporating a supramolecular cryptophane A (CrypA) thin film was pr...
Everyone knows the importance of sensors in our society and the huge attempt to improve their proper...
Les travaux présentés dans ce manuscrit concernent la réalisation et la caractérisation d’un capteur...
This work aimed at developing new surface acoustic wave (SAW) microsensors capable of detecting trac...
An innovative, simple and inexpensive Love-wave gas sensor based on Fe2O3@WO3−x nanoneedles to detec...
Amorphous titanium dioxide (TiO2) and gold (Au) doped TiO2-based surface acoustic wave (SAW) sensors...