In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by thermal oxidation method on the alumina substrates in single step and subsequently functionalized with gold nanoparticles, an excellent catalyst for gas-sensing reactions, by RF magnetron sputtering with different sputtering time of 2, 5, 10 and 15 s. Structural characterizations of sensing films by electron microscopy and X-ray analysis revealed that 5–15 nm Au nanoparticles with a single metallic state decorated the highly crystalline 20–30 nm WO3 nanowires with a monoclinic structure. The effect of Au sputtering time on gas sensing properties of WO3 sensors was systematically tested towards H2S, CO, NO2 and acetone, with different working tem...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Tungsten trioxide (WO3) nanowires decorated with iridium oxide nanoparticles (WO3-IrO2) have been st...
In this work, the optical H2-sensing properties of Pd/tungsten trioxide (WO3) nanorods prepared by r...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
WO3 thin films with peculiar morphology were synthesized coupling sputtering technique and acidic po...
Nanoparticles and nanoplatelets of WO3 and nanowires of WO2.72 have been investigated for their H2S-...
AbstractAerosal Assisted Chemical Vapour Deposition (AACVD) was implemented to grow WO3 layers with ...
International audienceTungsten trioxide thin films were deposited on silicon substrates by non-react...
In this doctoral thesis, it has been investigated and developed the Aerosol Assisted Chemical Vapour...
Tungsten trioxide thin films were deposited on silicon substrates by non-reactive RF sputtering from...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Nanostructured gold/tungsten trioxide (Au/WO 3) thin films based gasochromic sensors have been devel...
Abstract Nanostructured WO3 represents a promising material for fast and reliable molecular hydrogen...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Tungsten trioxide (WO3) nanowires decorated with iridium oxide nanoparticles (WO3-IrO2) have been st...
In this work, the optical H2-sensing properties of Pd/tungsten trioxide (WO3) nanorods prepared by r...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
This paper compares the H2S gas sensing properties of CuO-functionalized WO3 nanowires with those of...
WO3 thin films with peculiar morphology were synthesized coupling sputtering technique and acidic po...
Nanoparticles and nanoplatelets of WO3 and nanowires of WO2.72 have been investigated for their H2S-...
AbstractAerosal Assisted Chemical Vapour Deposition (AACVD) was implemented to grow WO3 layers with ...
International audienceTungsten trioxide thin films were deposited on silicon substrates by non-react...
In this doctoral thesis, it has been investigated and developed the Aerosol Assisted Chemical Vapour...
Tungsten trioxide thin films were deposited on silicon substrates by non-reactive RF sputtering from...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Nanostructured gold/tungsten trioxide (Au/WO 3) thin films based gasochromic sensors have been devel...
Abstract Nanostructured WO3 represents a promising material for fast and reliable molecular hydrogen...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Tungsten trioxide (WO3) nanowires decorated with iridium oxide nanoparticles (WO3-IrO2) have been st...
In this work, the optical H2-sensing properties of Pd/tungsten trioxide (WO3) nanorods prepared by r...