Transition metal sulphides, grown in alternate layers by Electrochemical Atomic Layer Deposition (ECALD) to form thin films, are relevant candidates as photovoltaic materials for solar-cell production. However, the knowledge of the phase composition of the deposited sulphide, which is a fundamental information to assign and predict its effective semiconducting properties, is often hindered by the limited amount of material and by its morphological constraints. In the present study, an X-ray Photoelectron Spectroscopy (XPS) and Atomic Force Microscopy (AFM) investigation of a copper sulphide thin film, synthesised according to the ECALD method, is proposed as an alternative and efficient way to identify the deposited semiconductor. The ...
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...
Earth abundant copper barium thioselenostannate, Cu2BaSn S,Se 4, absorbers have recently demonstrate...
CIGS are very promising semiconducting materials for solar energy conversion, but at the same time a...
A SEM, DRS and XAS study was carried out on ultra-thin films with chemical composition belonging to ...
Copper antimony sulfide (CAS) is a ternary material that is of research interest for thin film photo...
Copper sulfide (CuS) thin films were grown on a single crystal Ag(1 1 1) substrate by Electrochemica...
Kesterite, Cu2ZnSn(S,Se)4, are considered promising materials for energy conversion devices, encompa...
AbstractFilms of CuxS with 217-502 nm thickness were deposited by Automatic Spray Pyrolysis techniqu...
The aim of the study was to investigate the influence of solution concentration on the morphological...
Thin films of Copper Sulphide (CuS) have been fabricated by chemical bath deposition (CBD) technique...
Copper sulfide (CuS) thin films were prepared on commercial glass substrates by Chemical Bath Deposi...
Nanocrystalline CuS thin films were fabricated using a metal organic deposition technique taking Cu(...
Electrochemical Atomic Layer Deposition (E-ALD) technique has demonstrated to be a suitable process...
Thin layers of chalcocite (Cu2S) have been deposited via physical vapour deposition using various pr...
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...
Earth abundant copper barium thioselenostannate, Cu2BaSn S,Se 4, absorbers have recently demonstrate...
CIGS are very promising semiconducting materials for solar energy conversion, but at the same time a...
A SEM, DRS and XAS study was carried out on ultra-thin films with chemical composition belonging to ...
Copper antimony sulfide (CAS) is a ternary material that is of research interest for thin film photo...
Copper sulfide (CuS) thin films were grown on a single crystal Ag(1 1 1) substrate by Electrochemica...
Kesterite, Cu2ZnSn(S,Se)4, are considered promising materials for energy conversion devices, encompa...
AbstractFilms of CuxS with 217-502 nm thickness were deposited by Automatic Spray Pyrolysis techniqu...
The aim of the study was to investigate the influence of solution concentration on the morphological...
Thin films of Copper Sulphide (CuS) have been fabricated by chemical bath deposition (CBD) technique...
Copper sulfide (CuS) thin films were prepared on commercial glass substrates by Chemical Bath Deposi...
Nanocrystalline CuS thin films were fabricated using a metal organic deposition technique taking Cu(...
Electrochemical Atomic Layer Deposition (E-ALD) technique has demonstrated to be a suitable process...
Thin layers of chalcocite (Cu2S) have been deposited via physical vapour deposition using various pr...
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...
Earth abundant copper barium thioselenostannate, Cu2BaSn S,Se 4, absorbers have recently demonstrate...