We report on nanostructured films of Al doped tin oxide grown by facile spray pyrolysis route, and their physical properties were investigated. The sprayed films were grown onto indium tin oxide (ITO) substrate at 300 °C from the precursor (SnCl4, 5H2O). The content of Al is kept at 3 % in the solution. Structural, optical, electrical and surface properties were investigated. X-rays pattern reveals polycrystalline structure and SnO2 phase occurence. The visible transmitance exceeds 85 %, the band gap is found to be 3.7 eV. Nanotips were observed by 3D atomic force microscope (AFM) observation. Using the Hall effect measurements system (HMS), the films exhibit very low resistivity found to be 9.85 10 – 5 Ω.cm, a high electron concentration i...
Semiconducting transparent SnO2 thin films were prepared by microcontroller processed electro sprayi...
AbstractIndium tin oxide (ITO) thin films have been prepared by jet nebulizer spray pyrolysis techni...
Indium tin oxide (ITO) thin films have been prepared by spray pyrolysis using a very low concentrati...
We report on nanostructured films of Al doped tin oxide grown by facile spray pyrolysis route, and t...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Tin oxide films (SnO2) are prepared by the spray pyrolysis technique at different temperatures. The ...
Pure and Al-doped SnO2 as gas sensors with properties characteristics provoking gas sensitivity were...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
The chemical spray pyrolysis technique has been one of the major techniques to deposit a wide variet...
Transparent Aluminum doped tin oxide (SnO2:Al) thin films with different Al percentage (1.96%, 3.85%...
International audienceSnO2 thin films were deposited on glass substrates at 350 °C by spray pyrolysi...
Semiconducting transparent SnO2 thin films were prepared by microcontroller processed electro sprayi...
AbstractIndium tin oxide (ITO) thin films have been prepared by jet nebulizer spray pyrolysis techni...
Indium tin oxide (ITO) thin films have been prepared by spray pyrolysis using a very low concentrati...
We report on nanostructured films of Al doped tin oxide grown by facile spray pyrolysis route, and t...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Tin oxide films (SnO2) are prepared by the spray pyrolysis technique at different temperatures. The ...
Pure and Al-doped SnO2 as gas sensors with properties characteristics provoking gas sensitivity were...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
Aluminum-doped tin oxide (SnO 2 :Al) thin films were produced by an ultrasonic spray pyrolysis metho...
The chemical spray pyrolysis technique has been one of the major techniques to deposit a wide variet...
Transparent Aluminum doped tin oxide (SnO2:Al) thin films with different Al percentage (1.96%, 3.85%...
International audienceSnO2 thin films were deposited on glass substrates at 350 °C by spray pyrolysi...
Semiconducting transparent SnO2 thin films were prepared by microcontroller processed electro sprayi...
AbstractIndium tin oxide (ITO) thin films have been prepared by jet nebulizer spray pyrolysis techni...
Indium tin oxide (ITO) thin films have been prepared by spray pyrolysis using a very low concentrati...