International audienceThe effect of thermal treatment and additives on surface chemistry and gas sensor properties of nanocrystalline tin oxide is analyzed. SnO2–Fe2O3 and SnO2–MoO3 nanocomposites were prepared by wet chemical synthesis. The composition and nanostructure of the powders have been previously investigated by EDX spectroscopy, XRD, TEM, Raman spectroscopy, BET measurements and Mössbauer spectroscopy. Acidic properties of the samples were characterized by NH3-TPD method. The raising of treatment temperature for undoped SnO2 changes the activation energy spectra of ammonia desorption. The concentration of acid centers on the surface of SnO2 increases with addition of acidic oxide MoO3 and decreases with addition of basic oxide Fe...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
This work gives results about the characterization of SnO2 materials, prepared via the sol-gel route...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
This review is an attempt to give an overview on how surface science studies cancontribute to a fund...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
Weakly agglomerated nanocrystalline scandia doped tin oxide powders with high surface area (170-220 ...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
This work gives further results about the properties of SnO2 nano-sized materials, prepared via a so...
This work gives results about the characterization of SnO2 materials, prepared via the sol-gel route...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
This work gives results about the characterization of SnO2 materials, prepared via the sol-gel route...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
International audienceThe effect of thermal treatment and additives on surface chemistry and gas sen...
This review is an attempt to give an overview on how surface science studies cancontribute to a fund...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
Weakly agglomerated nanocrystalline scandia doped tin oxide powders with high surface area (170-220 ...
Tin dioxide (SnO2) nanoparticles were straightforwardly synthesized using an easily scaled-up liquid...
This work gives further results about the properties of SnO2 nano-sized materials, prepared via a so...
This work gives results about the characterization of SnO2 materials, prepared via the sol-gel route...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...
This work gives results about the characterization of SnO2 materials, prepared via the sol-gel route...
The gas-sensing mechanism of an n-type semiconductor (tin dioxide) gas sensor is reviewed in this pa...