In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical bath deposition (CBD) method at 80 degrees C, from aqueous solutions of zinc sulphate and sodium selenosulphide, which were produced using solid selenium as the E selenium source. The optical and structural properties of ZnSe thin films were investigated at room-temperature. The pH of the chemical bath, in which ZnSe thin films were immersed, were changed between pH:8-11. Optical properties of the films, including extinction coefficient, refractive index, reflectance, absorbance, transmittance, dielectric constants and optical density values were calculated using absorbance and transmittance measurements determined using a Hach Lange 500 spectr...
Recently there has been much interest on the preparation and characterization of ternary semiconduct...
Initial growth stage evaluation of high quality ZnSe films deposited on a glass substrate was invest...
ZnSe layers have been grown by a low temperature (similar to 65 degrees C) electrochemical depositio...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
The ZnSe thin films have been deposited onto glass substrates by the simple chemical bath deposition...
ZnSe thin film deposition and their properties are briefly reviewed in this article. This includes a...
Transparent and polycrystalline zinc sulfide (ZnS) thin films were prepared by the chemical bath dep...
Optical and structural characterization of Zinc Selenide (ZnSe) thin films (thickness ranging betwee...
The Zinc Selenide (ZnSe) thin films have been deposited on SnO2/glass substrates by a simple and ine...
The Zinc Selenide (ZnSe) thin films have been deposited on SnO2/glass substrates by a simple and ine...
The Zinc Selenide (ZnSe) thin films have been deposited on SnO2/glass substrates by a simple and ine...
Zinc selenide thin films on ITO glass substrate have been grown by an electrochemical deposition tec...
The effect of Zn:Se ratio on the photoconducting properties of ZnSe thin films has been studied. The...
In this study, zinc oxide, zinc sulfide and zinc selenide semiconductor thin films were produced by ...
In this work, zinc selenide (ZnSe) thin films were deposited by thermal evaporation method using pur...
Recently there has been much interest on the preparation and characterization of ternary semiconduct...
Initial growth stage evaluation of high quality ZnSe films deposited on a glass substrate was invest...
ZnSe layers have been grown by a low temperature (similar to 65 degrees C) electrochemical depositio...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
The ZnSe thin films have been deposited onto glass substrates by the simple chemical bath deposition...
ZnSe thin film deposition and their properties are briefly reviewed in this article. This includes a...
Transparent and polycrystalline zinc sulfide (ZnS) thin films were prepared by the chemical bath dep...
Optical and structural characterization of Zinc Selenide (ZnSe) thin films (thickness ranging betwee...
The Zinc Selenide (ZnSe) thin films have been deposited on SnO2/glass substrates by a simple and ine...
The Zinc Selenide (ZnSe) thin films have been deposited on SnO2/glass substrates by a simple and ine...
The Zinc Selenide (ZnSe) thin films have been deposited on SnO2/glass substrates by a simple and ine...
Zinc selenide thin films on ITO glass substrate have been grown by an electrochemical deposition tec...
The effect of Zn:Se ratio on the photoconducting properties of ZnSe thin films has been studied. The...
In this study, zinc oxide, zinc sulfide and zinc selenide semiconductor thin films were produced by ...
In this work, zinc selenide (ZnSe) thin films were deposited by thermal evaporation method using pur...
Recently there has been much interest on the preparation and characterization of ternary semiconduct...
Initial growth stage evaluation of high quality ZnSe films deposited on a glass substrate was invest...
ZnSe layers have been grown by a low temperature (similar to 65 degrees C) electrochemical depositio...