Thin films of Zinc sulphide (ZnS) on glass substrate were prepared by chemical spray pyrolysis technique using precursor solutions of zinc chloride and n–n dimethyl thiourea at substrate temperatures of 598 K and 623 K. X ray diffraction analysis exposed the polycrystalline nature with growing crystallinity with respect to substrate temperature. The preferential orientation growth of ZnS compound increased with relatively higher substrate temperature having hexagonal structure along (019) plane. At 623 K, The size of the Zinc sulphide crystallite with nano dimension was determined using the Full Width Half Maximum value of the Bragg peak. The surface morphology had been analyzed using scanning electron microscope. The compositional analysis...
AbstractPhotoluminescence (PL) technique has been employed to successfully determine the composition...
ZnS thin films were deposited onto glass substrates by chemical bath deposition (CBD) technique at d...
Adherent and uniform films of ZnS and ZnS:Ni were deposited reproducibly by Dip coating method onto ...
Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern ...
AbstractZinc sulfide (ZnS) thin films have been successfully deposited via spray pyrolysis using an ...
Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern ...
Thin films of tin sulphide (SnS) were prepared on glass substrates,using chemical spray pyrolysis te...
bedir, metin/0000-0001-7772-3635; Yildirim, Rabia Guler/0000-0002-8610-4649WOS: 000244455500006ZnS t...
The II-VI group semiconductors are of great importance due to their applications in various opto ele...
Thin films of tin disulphide (SnS2) were deposited on glass substrates by spray pyrolysis technique ...
ZnS nanocrystalline thin films by different temperature of reaction were prepared by chemical bath d...
ZnS thin films have been deposited on a glass substrate by aerosol assisted chemical vapor depositio...
Zinc sulfide thin films with the thickness of about 0.5 µm were deposited using a thermal evaporatio...
ZnS thin films were deposited on indium tin oxide glass substrate using the chemical bath deposition...
ZnS thin films were deposited onto glass substrates by chemical bath deposition (CBD) technique at d...
AbstractPhotoluminescence (PL) technique has been employed to successfully determine the composition...
ZnS thin films were deposited onto glass substrates by chemical bath deposition (CBD) technique at d...
Adherent and uniform films of ZnS and ZnS:Ni were deposited reproducibly by Dip coating method onto ...
Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern ...
AbstractZinc sulfide (ZnS) thin films have been successfully deposited via spray pyrolysis using an ...
Zinc sulfide (ZnS) is important II-VI semiconductors material for the development of various modern ...
Thin films of tin sulphide (SnS) were prepared on glass substrates,using chemical spray pyrolysis te...
bedir, metin/0000-0001-7772-3635; Yildirim, Rabia Guler/0000-0002-8610-4649WOS: 000244455500006ZnS t...
The II-VI group semiconductors are of great importance due to their applications in various opto ele...
Thin films of tin disulphide (SnS2) were deposited on glass substrates by spray pyrolysis technique ...
ZnS nanocrystalline thin films by different temperature of reaction were prepared by chemical bath d...
ZnS thin films have been deposited on a glass substrate by aerosol assisted chemical vapor depositio...
Zinc sulfide thin films with the thickness of about 0.5 µm were deposited using a thermal evaporatio...
ZnS thin films were deposited on indium tin oxide glass substrate using the chemical bath deposition...
ZnS thin films were deposited onto glass substrates by chemical bath deposition (CBD) technique at d...
AbstractPhotoluminescence (PL) technique has been employed to successfully determine the composition...
ZnS thin films were deposited onto glass substrates by chemical bath deposition (CBD) technique at d...
Adherent and uniform films of ZnS and ZnS:Ni were deposited reproducibly by Dip coating method onto ...