The effect of different mild post-annealing treatments in air, at 270 °C, for 4–6 min, on the optical, electrical, structural and chemical properties of copper sulphide (CuxS) thin films deposited at room temperature are investigated. CuxS films, 70 nm thick, are deposited on glass substrates by vacuum thermal evaporation from a Cu2S:S (50:50 wt.%) sulphur rich powder mixture. The as-deposited highly conductive crystalline CuS (covellite) films show high carrier concentration (∼1022 cm−3), low electrical resistivity (∼10−4 Ω cm) and inconclusive p-type conduction. After the mild post-annealing, these films display increasing values of resistivity (∼10−3 to ∼10−2 Ω cm) with annealing time and exhibit conclusive p-type conduction. An increase...
Thin films of Copper Sulphide (CuS) have been fabricated by chemical bath deposition (CBD) technique...
In this study, we have used a new single-step method for producing Cu2S thin films, which have good ...
The CuS thin films were grown by Successive Ionic Layer Adsorption and Reaction on glass substrates ...
The effect of different mild post-annealing treatments in air, at 270 °C, for 4–6 min, on the optica...
AbstractCopper sulphide CuS was deposited on three substrates; glass, Indium Tin Oxide (ITO) and Ti ...
CuxS thin films, 80 nm thick, are deposited by vacuum thermal evaporation of sulfur-rich powder mixt...
Thin films of copper sulfide (CuS) with various molarities values of Cu concentrations (0.2,0.3,0.4...
Nowadays, among the available transparent semiconductors for device use, the great majority (if not ...
The structure, phase transitions and electrical conductivity of Cu<SUB>2-x</SUB>S films deposited by...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Thin films of Copper sulphide were deposited on glass substrates using chemical bath deposition tech...
Copper sulfide (CuS) thin films were prepared on commercial glass substrates by Chemical Bath Deposi...
Transition metal sulphides, grown in alternate layers by Electrochemical Atomic Layer Deposition (EC...
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...
In this study, we have used a new single-step method for producing Cu2S thin films, which have good ...
The CuS thin films were grown by Successive Ionic Layer Adsorption and Reaction on glass substrates ...
The effect of different mild post-annealing treatments in air, at 270 °C, for 4–6 min, on the optica...
AbstractCopper sulphide CuS was deposited on three substrates; glass, Indium Tin Oxide (ITO) and Ti ...
CuxS thin films, 80 nm thick, are deposited by vacuum thermal evaporation of sulfur-rich powder mixt...
Thin films of copper sulfide (CuS) with various molarities values of Cu concentrations (0.2,0.3,0.4...
Nowadays, among the available transparent semiconductors for device use, the great majority (if not ...
The structure, phase transitions and electrical conductivity of Cu<SUB>2-x</SUB>S films deposited by...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Cu2S thin films deposited on glass substrate by chemical bath deposition were studied at different d...
Thin films of Copper sulphide were deposited on glass substrates using chemical bath deposition tech...
Copper sulfide (CuS) thin films were prepared on commercial glass substrates by Chemical Bath Deposi...
Transition metal sulphides, grown in alternate layers by Electrochemical Atomic Layer Deposition (EC...
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...
In this study, we have used a new single-step method for producing Cu2S thin films, which have good ...
The CuS thin films were grown by Successive Ionic Layer Adsorption and Reaction on glass substrates ...