Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern technologies and photovoltaic applications. ZnS thin film was prepared by using chemical spray pyrolysis technique. The starting solution is a mixture of 0.1 M zinc chloride as source of Zn and 0.05 M thiourea as source of S. The glass substrate temperature was varied in the range of 300 °C-400 °C to investigate the influence of substrate temperature on the structure, chemical composition, morphological and optical properties of ZnS films. The DRX analyses indicated that ZnS films have polycrystalline cubic structure with (111) preferential orientation and grain size varied from 25 to 60 nm, increasing with substrate temperature. The opt...
The work was financially supported by program 211 of the Government of the Russian Federation (№ 02....
Nanostructured Zinc Sulfide (ZnS) thin films with wurtzite structure were prepared by chemical spray...
AbstractZnS thin films had been deposited by chemical bath deposition method onto glass substrates i...
Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern ...
The II-VI group semiconductors are of great importance due to their applications in various opto ele...
Thin films of Zinc sulphide (ZnS) on glass substrate were prepared by chemical spray pyrolysis techn...
AbstractZinc sulfide (ZnS) thin films have been successfully deposited via spray pyrolysis using an ...
bedir, metin/0000-0001-7772-3635; Yildirim, Rabia Guler/0000-0002-8610-4649WOS: 000244455500006ZnS t...
AbstractPhotoluminescence (PL) technique has been employed to successfully determine the composition...
ZnS nanocrystalline thin films by different temperature of reaction were prepared by chemical bath d...
Spin coating technique was used to deposit zinc sulphide (ZnS) thin films successfully onto glass su...
Copper and ZnS doped zinc sulphide thin films are equipped through chemicalbath deposition method (C...
In the present work, ZnS and Cu incorporated at (2%, 4%,6%, 8%, and 10%) thin films were growth onto...
Zinc sulfide thin films are deposited by ultrasonic spray pyrolysis. The substrate temperature and s...
Adherent and uniform films of ZnS and ZnS:Ni were deposited reproducibly by Dip coating method onto ...
The work was financially supported by program 211 of the Government of the Russian Federation (№ 02....
Nanostructured Zinc Sulfide (ZnS) thin films with wurtzite structure were prepared by chemical spray...
AbstractZnS thin films had been deposited by chemical bath deposition method onto glass substrates i...
Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern ...
The II-VI group semiconductors are of great importance due to their applications in various opto ele...
Thin films of Zinc sulphide (ZnS) on glass substrate were prepared by chemical spray pyrolysis techn...
AbstractZinc sulfide (ZnS) thin films have been successfully deposited via spray pyrolysis using an ...
bedir, metin/0000-0001-7772-3635; Yildirim, Rabia Guler/0000-0002-8610-4649WOS: 000244455500006ZnS t...
AbstractPhotoluminescence (PL) technique has been employed to successfully determine the composition...
ZnS nanocrystalline thin films by different temperature of reaction were prepared by chemical bath d...
Spin coating technique was used to deposit zinc sulphide (ZnS) thin films successfully onto glass su...
Copper and ZnS doped zinc sulphide thin films are equipped through chemicalbath deposition method (C...
In the present work, ZnS and Cu incorporated at (2%, 4%,6%, 8%, and 10%) thin films were growth onto...
Zinc sulfide thin films are deposited by ultrasonic spray pyrolysis. The substrate temperature and s...
Adherent and uniform films of ZnS and ZnS:Ni were deposited reproducibly by Dip coating method onto ...
The work was financially supported by program 211 of the Government of the Russian Federation (№ 02....
Nanostructured Zinc Sulfide (ZnS) thin films with wurtzite structure were prepared by chemical spray...
AbstractZnS thin films had been deposited by chemical bath deposition method onto glass substrates i...