AbstractCopper sulphide CuS was deposited on three substrates; glass, Indium Tin Oxide (ITO) and Ti by using spray pyrolysis deposition (SPD). After depositing CuS thin films on the substrates at 200°C, they were annealed at 50, 100, 150, and 200°C for 1 hour. Structural measurements revealed covellite CuS and chalcocite Cu2S phases for thin films before and after annealing at 200°C with changes in intensities, and only covellite CuS phase for thin films after annealing at 50, 100, and 150°C. Morphological characteristics show hexagonal-cubic crystals for the CuS thin film deposited on glass substrate and plates structures for films deposited on ITO and Ti substrates before annealing, these crystals became bigger in size and there were be o...
Thin films of Copper Tin Selenide (Cu2SnSe3), were successfully deposited on well-cleaned glass subs...
Thin films of Copper Sulphide (CuS) have been fabricated by chemical bath deposition (CBD) technique...
Copper oxide thin films were deposited on glass substrate using Successive Ionic Layer Adsorption an...
AbstractCopper sulphide CuS was deposited on three substrates; glass, Indium Tin Oxide (ITO) and Ti ...
The effect of different mild post-annealing treatments in air, at 270 °C, for 4–6 min, on the optica...
Polycrystalline copper sulphide (CuxS) thin films were grown by ultrasonic spray pyrolysis method us...
Polycrystalline copper sulphide (CuxS) thin films were grown by ultrasonic spray pyrolysis method us...
Thin films of copper sulfide (CuS) with various molarities values of Cu concentrations (0.2,0.3,0.4...
Thin films of (Cu2S)100-x( SnS2 )x at X=[ 30,40, &50)]% with thickness (0.9±0.03)µm , had been prepa...
At this work, nanostructure copper sulfide (CuS) thin films at different temperature of substrate an...
CuxS thin films, 80 nm thick, are deposited by vacuum thermal evaporation of sulfur-rich powder mixt...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Copper sulfide (CuS) thin films were prepared on commercial glass substrates by Chemical Bath Deposi...
The effects of the sulphurization annealing time on the morphological, chemical, structural and elec...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Thin films of Copper Tin Selenide (Cu2SnSe3), were successfully deposited on well-cleaned glass subs...
Thin films of Copper Sulphide (CuS) have been fabricated by chemical bath deposition (CBD) technique...
Copper oxide thin films were deposited on glass substrate using Successive Ionic Layer Adsorption an...
AbstractCopper sulphide CuS was deposited on three substrates; glass, Indium Tin Oxide (ITO) and Ti ...
The effect of different mild post-annealing treatments in air, at 270 °C, for 4–6 min, on the optica...
Polycrystalline copper sulphide (CuxS) thin films were grown by ultrasonic spray pyrolysis method us...
Polycrystalline copper sulphide (CuxS) thin films were grown by ultrasonic spray pyrolysis method us...
Thin films of copper sulfide (CuS) with various molarities values of Cu concentrations (0.2,0.3,0.4...
Thin films of (Cu2S)100-x( SnS2 )x at X=[ 30,40, &50)]% with thickness (0.9±0.03)µm , had been prepa...
At this work, nanostructure copper sulfide (CuS) thin films at different temperature of substrate an...
CuxS thin films, 80 nm thick, are deposited by vacuum thermal evaporation of sulfur-rich powder mixt...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Copper sulfide (CuS) thin films were prepared on commercial glass substrates by Chemical Bath Deposi...
The effects of the sulphurization annealing time on the morphological, chemical, structural and elec...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Thin films of Copper Tin Selenide (Cu2SnSe3), were successfully deposited on well-cleaned glass subs...
Thin films of Copper Sulphide (CuS) have been fabricated by chemical bath deposition (CBD) technique...
Copper oxide thin films were deposited on glass substrate using Successive Ionic Layer Adsorption an...