Crystalline tungsten trioxide (WO3) thin films covered by noble metal (gold and platinum) nanoparticles are synthesized via wet chemistry and used as optical sensors for gaseous hydrogen. Sensing performances are strongly influenced by the catalyst used, with platinum (Pt) resulting as best. Surprisingly, it is found that gold (Au) can provide remarkable sensing activity that tuned out to be strongly dependent on the nanoparticle size: devices sensitized with smaller nanoparticles display better H-2 sensing performance. Computational insight based on density functional theory calculations suggested that this can be related to processes occurring specifically at the Au nanoparticle-WO3 interface (whose extent is in fact dependent on the nano...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
In this letter we report the enhanced sensing of platinum (Pt)-loaded tungsten oxide (WO3) sensor co...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...
Nanostructured gold/tungsten trioxide (Au/WO 3) thin films based gasochromic sensors have been devel...
Controlled amounts of chemically synthesised gold (Au) nanoclusters were deposited onto tungsten tri...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Tungsten oxide thin films with different thicknesses, crystallinity and morphology were synthesized ...
Many studies have identified tungsten trioxide (WO3) as a promising candidate for optical gas sensin...
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...
Tungsten oxide thin films with different thicknesses, crystallinity and morphology were synthesized ...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...
Absorbance response of tungsten trioxide (WO3) nanorod thin films coated with palladium (Pd) towards...
Hydrogen is one of the most important gases that can potentially replace fossil fuels in the future....
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
In this letter we report the enhanced sensing of platinum (Pt)-loaded tungsten oxide (WO3) sensor co...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...
Nanostructured gold/tungsten trioxide (Au/WO 3) thin films based gasochromic sensors have been devel...
Controlled amounts of chemically synthesised gold (Au) nanoclusters were deposited onto tungsten tri...
WO3 thin films with peculiar morphology were synthesized using sputtering technique, acid boiling an...
Tungsten oxide thin films with different thicknesses, crystallinity and morphology were synthesized ...
Many studies have identified tungsten trioxide (WO3) as a promising candidate for optical gas sensin...
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...
Tungsten oxide thin films with different thicknesses, crystallinity and morphology were synthesized ...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...
Absorbance response of tungsten trioxide (WO3) nanorod thin films coated with palladium (Pd) towards...
Hydrogen is one of the most important gases that can potentially replace fossil fuels in the future....
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
In this letter we report the enhanced sensing of platinum (Pt)-loaded tungsten oxide (WO3) sensor co...
Hydrogen-related technologies are rapidly developing, driven by the necessity of efficient and high-...