Highly transparent undoped and indium doped ZnO thin films have been grown on glass substrates by using the spray pyrolysis process. Conditions of preparation have been optimized to get good quality and reproducible films with required properties. Polycrystalline films with an hexagonal Wurtzite-type structure were easily obtained under the optimum spraying conditions. Both of samples have shown high transmission coefficient in the visible and infrared wavelength range with sharp absorption edge around 380 nm which closely corresponds to the intrinsic band-gap of ZnO (3.2 eV). Orientation and crystallites size were remarkably modified by deposition temperature and indium doping
The optical properties of transparent conducting zinc oxide (ZnO) films prepared by spray pyrolysis ...
International audienceIn this work, ZnO films are deposited by the ultrasonic spray pyrolysis techni...
International audienceIn this contribution we present the optical properties of ZnO films prepared b...
Highly transparent undoped and indium doped ZnO thin films have been grown on glass substrates by u...
Thin films of transparent undoped and indium doped ZnO have been deposited using the spray pyrolysis...
Abstract: Spray pyrolysis technique has been proved to be an effective tool to produce well oriented...
Transparent zinc oxide thin films (undoped and Mo doped) were coated on glass substrates at the subs...
ZnO is an n-type semiconducting material with high optical transparency in the visible range (400 -...
International audienceIn this contribution, the effect of different dopants (Al, Sn, and Cu) on the ...
This study focused on the deposition of indium-doped zinc oxide (IZO) films at high growth rates by ...
International audienceZnO thin films are widely used as antireflection layer in solar cells and can ...
The ZnO thin films on Si (111) substrate have been grown using ultrasonic spray pyrolisis (USP) at 4...
In this work, we report the transparent pure and Sn-doped zinc oxide (ZnO). The films were deposited...
Spray pyrolysis has been used to deposit highly transparent and conducting films of indium-doped zin...
Zinc oxide thin films were prepared by spray pyrolytic decomposition of zinc acetate onto a glass su...
The optical properties of transparent conducting zinc oxide (ZnO) films prepared by spray pyrolysis ...
International audienceIn this work, ZnO films are deposited by the ultrasonic spray pyrolysis techni...
International audienceIn this contribution we present the optical properties of ZnO films prepared b...
Highly transparent undoped and indium doped ZnO thin films have been grown on glass substrates by u...
Thin films of transparent undoped and indium doped ZnO have been deposited using the spray pyrolysis...
Abstract: Spray pyrolysis technique has been proved to be an effective tool to produce well oriented...
Transparent zinc oxide thin films (undoped and Mo doped) were coated on glass substrates at the subs...
ZnO is an n-type semiconducting material with high optical transparency in the visible range (400 -...
International audienceIn this contribution, the effect of different dopants (Al, Sn, and Cu) on the ...
This study focused on the deposition of indium-doped zinc oxide (IZO) films at high growth rates by ...
International audienceZnO thin films are widely used as antireflection layer in solar cells and can ...
The ZnO thin films on Si (111) substrate have been grown using ultrasonic spray pyrolisis (USP) at 4...
In this work, we report the transparent pure and Sn-doped zinc oxide (ZnO). The films were deposited...
Spray pyrolysis has been used to deposit highly transparent and conducting films of indium-doped zin...
Zinc oxide thin films were prepared by spray pyrolytic decomposition of zinc acetate onto a glass su...
The optical properties of transparent conducting zinc oxide (ZnO) films prepared by spray pyrolysis ...
International audienceIn this work, ZnO films are deposited by the ultrasonic spray pyrolysis techni...
International audienceIn this contribution we present the optical properties of ZnO films prepared b...