in dioxide (SnO2) serves as an important base material in a variety of resistive type gas sensors. The widespread applicability of this semicoducting oxide is related both to its range of conductance variability and to the fact that it responds to both oxidising and reducing gases. The antimony doped tin-oxide films were prepared by spray pyrolysis method. The as-deposited films are blackish in colour. Addition of antimony impurity showed little increase in the thickness. The X-ray diffraction pattern shows characteristic tin oxide peaks with tetragonal structure. As the doping concentration of antimony was increased, new peak corresponding to Sb was observed. The intensity of this peak found to be increased when the Sb concentration was in...
The modification of simultaneously existing multiple oxidation states in host lattice cations via th...
In this report we present results of investigation of influence of the parameters of SnO2 thin film...
A nanostructured SnO2 conductometric gas sensor was produced from thermally evaporated Sn clusters u...
in dioxide (SnO2) serves as an important base material in a variety of resistive type gas sensors. T...
Tin dioxide (SnO2) is the most-used semiconductor for gas sensing applications. However, lack of sel...
Pure and Al-doped SnO2 as gas sensors with properties characteristics provoking gas sensitivity were...
867-870The thin films of undoped and antimony doped tin oxide films were prepared on glass substrat...
Gas sensors are widely applied to monitor combustible and harmful gases which can be detrimental to ...
Tin oxide (SnO2) gas sensor has been fabricated on glass substrate by using thermal evaporation and ...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
Results of investigation of the SnO2 thin films sensitivity towards to hydrogen are pre...
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
In this study tin oxide thin film is deposited on glass substrate by Thermal Evaporation technique f...
Ultrathin tin oxide films were deposited on SiO2 nanoparticles using atomic layer deposition (ALD) t...
Tin oxide-based thin films are deposited by ultrasonic spray pyrolysis technology, in which Cu addit...
The modification of simultaneously existing multiple oxidation states in host lattice cations via th...
In this report we present results of investigation of influence of the parameters of SnO2 thin film...
A nanostructured SnO2 conductometric gas sensor was produced from thermally evaporated Sn clusters u...
in dioxide (SnO2) serves as an important base material in a variety of resistive type gas sensors. T...
Tin dioxide (SnO2) is the most-used semiconductor for gas sensing applications. However, lack of sel...
Pure and Al-doped SnO2 as gas sensors with properties characteristics provoking gas sensitivity were...
867-870The thin films of undoped and antimony doped tin oxide films were prepared on glass substrat...
Gas sensors are widely applied to monitor combustible and harmful gases which can be detrimental to ...
Tin oxide (SnO2) gas sensor has been fabricated on glass substrate by using thermal evaporation and ...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
Results of investigation of the SnO2 thin films sensitivity towards to hydrogen are pre...
Tin oxide (SnO2) thin films are having promising properties such as high visible transmittance and l...
In this study tin oxide thin film is deposited on glass substrate by Thermal Evaporation technique f...
Ultrathin tin oxide films were deposited on SiO2 nanoparticles using atomic layer deposition (ALD) t...
Tin oxide-based thin films are deposited by ultrasonic spray pyrolysis technology, in which Cu addit...
The modification of simultaneously existing multiple oxidation states in host lattice cations via th...
In this report we present results of investigation of influence of the parameters of SnO2 thin film...
A nanostructured SnO2 conductometric gas sensor was produced from thermally evaporated Sn clusters u...