Highly sensitive H2 gas sensors were prepared using pure and Pt-loaded SnO2 nanoparticles. Thick film sensors (~35 μm) were fabricated that showed a highly porous interconnected structure made of high density small grained nanoparticles. Using Pt as catalyst improved sensor response and reduced the operating temperature for achieving high sensitivity because of the negative temperature coefficient observed in Pt-loaded SnO2. The highest sensor response to 1000 ppm H2 was 10,500 at room temperature with a response time of 20 s. The morphology of the SnO2 nanoparticles, the surface loading concentration and dispersion of the Pt catalyst and the microstructure of the sensing layer all play a key role in the development of an effective gas sens...
: Hydrogen is largely adopted in industrial processes and is one of the leading options for storing ...
Nanostructured SnO2 is a promising material for the scalable production of portable gas sensors. To ...
A series of xSnO2(1-x)Pt nanopowder (x = 1, 0.995, 0.99, 0.985, 0.98) was calcinated at 950 °C, mixe...
Platinum (Pt)-doped SnO2 nanopowders were prepared by a new doping method which controls the surface...
In this paper, we present an enhanced H2S gas sensor based on selectively loading Pt nanocatalyst on...
International audienceIIn this study, we designed a new structure based on Pd-decorated TiN-coated S...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
Nanocrystalline tin dioxide doped with antimony Sn(Sb)O-2 and catalyzed by 1 wt% palladium has been ...
In the present work, hydrogen gas sensor of modest sensitivity utilizing functionalized multiwalled ...
Nanocrystalline In2O3doped SnO2 thin film sensor is synthesized via sol-gel dip-coating technique. T...
Fast detection of H-2 gas at room temperature has constantly remained a challenge. The metal-oxide b...
Nanocrystalline In2O3-doped SnO2 thin film sensor is synthesized via sol-gel dip-coating technique. ...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
As highly sensitive H2S gas sensors, Au- and Ag-catalyzed SnO2 thin films with morphology-controlled...
: Hydrogen is largely adopted in industrial processes and is one of the leading options for storing ...
Nanostructured SnO2 is a promising material for the scalable production of portable gas sensors. To ...
A series of xSnO2(1-x)Pt nanopowder (x = 1, 0.995, 0.99, 0.985, 0.98) was calcinated at 950 °C, mixe...
Platinum (Pt)-doped SnO2 nanopowders were prepared by a new doping method which controls the surface...
In this paper, we present an enhanced H2S gas sensor based on selectively loading Pt nanocatalyst on...
International audienceIIn this study, we designed a new structure based on Pd-decorated TiN-coated S...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
Nanocrystalline tin dioxide doped with antimony Sn(Sb)O-2 and catalyzed by 1 wt% palladium has been ...
In the present work, hydrogen gas sensor of modest sensitivity utilizing functionalized multiwalled ...
Nanocrystalline In2O3doped SnO2 thin film sensor is synthesized via sol-gel dip-coating technique. T...
Fast detection of H-2 gas at room temperature has constantly remained a challenge. The metal-oxide b...
Nanocrystalline In2O3-doped SnO2 thin film sensor is synthesized via sol-gel dip-coating technique. ...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
As highly sensitive H2S gas sensors, Au- and Ag-catalyzed SnO2 thin films with morphology-controlled...
: Hydrogen is largely adopted in industrial processes and is one of the leading options for storing ...
Nanostructured SnO2 is a promising material for the scalable production of portable gas sensors. To ...
A series of xSnO2(1-x)Pt nanopowder (x = 1, 0.995, 0.99, 0.985, 0.98) was calcinated at 950 °C, mixe...