The zinc selenide (ZnSe) nanocrystal thin films have been prepared on glass substrates by chemical bath deposition at 80 degrees C. The ZnSe films have been annealed in an air atmosphere at 373, 473, 573, 673 and 773 K for 1 h. The crystallographic structure and size of the crystallites, dislocation density, number of crystallites per unit surface area and strain have been studied by X-ray diffraction on as-deposited and annealed films. The surface morphology of ZnSe coated thin films obtained at different annealing temperatures has been elucidated by AFM studies. The optical properties of the films have been investigated by recording the transmission spectra. It has been observed that the energy band gap decreases upon annealing temperatur...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
Zinc selenide (ZnSe) thin films were deposited on optical glass substrates using thermal vacuum evap...
The zinc selenide (ZnSe) nanocrystal thin films have been prepared on glass substrates by chemical b...
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...
In this work, zinc selenide (ZnSe) thin films were deposited by thermal evaporation method using pur...
International audienceThe photosensitivity of the chemical bath deposited zinc selenide (ZnSe) thin ...
A nanocrystalline thin film of ZnSe was successfully electrodeposited on copper substrate using a no...
International audienceThe photosensitivity of the chemical bath deposited zinc selenide (ZnSe) thin ...
cited By 9Zinc selenide (ZNSE) thin films were deposited on optical glass substrates using thermal v...
ZnSe thin films are prepared by thermal evaporation of nanocrystalline ZnSe particles synthesized us...
739-743The ZnSe material synthesised by the fusion method was used to deposit 200 nm thin layers on ...
Samples of ZnSe of the same film thickness (320 nm) have been thermally evaporated on unheated quart...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
Zinc selenide (ZnSe) thin films were deposited on optical glass substrates using thermal vacuum evap...
The zinc selenide (ZnSe) nanocrystal thin films have been prepared on glass substrates by chemical b...
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...
In this work, zinc selenide (ZnSe) thin films were deposited by thermal evaporation method using pur...
International audienceThe photosensitivity of the chemical bath deposited zinc selenide (ZnSe) thin ...
A nanocrystalline thin film of ZnSe was successfully electrodeposited on copper substrate using a no...
International audienceThe photosensitivity of the chemical bath deposited zinc selenide (ZnSe) thin ...
cited By 9Zinc selenide (ZNSE) thin films were deposited on optical glass substrates using thermal v...
ZnSe thin films are prepared by thermal evaporation of nanocrystalline ZnSe particles synthesized us...
739-743The ZnSe material synthesised by the fusion method was used to deposit 200 nm thin layers on ...
Samples of ZnSe of the same film thickness (320 nm) have been thermally evaporated on unheated quart...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
In this study, zinc selenide (ZnSe) thin films were produced on glass substrate by using chemical ba...
Zinc selenide (ZnSe) thin films were deposited on optical glass substrates using thermal vacuum evap...