Due to the availability and low cost of the elements, the ternary Cu-Sb-S and Cu-Sb-Se semiconductor systems are being studied as sustainable alternative absorber materials to replace CuIn(Ga)(S,Se)2in thin film photovoltaic applications. Simple evaporation of the metal precursors followed by annealing in a chalcogen environment has been employed in order to test the feasibility of converting stacked metallic layers into the desired compounds. Other samples have been produced from aqueous solutions by electrochemical methods that may be suitable for scale-up. It was found that the minimum temperature required for the complete conversion of the precursors into the ternary chalcogen is 350 °C, while binary phase separation occurs at lower tem...
With an increasing demand for fossil-free energy the development of efficient solar cells made from ...
Magnetron sputtered Cu-Sb metallic precursors were sulphidised on glass and molybdenum/glass substra...
Thin films of CuSbS2 and Cu3BiS3 were produced by conversion of stacked and co-electroplated metal p...
Due to the availability and low cost of the elements, the ternary Cu–Sb–S and Cu–Sb–Se semiconductor...
Due to the availability and low cost of the elements, the semiconductor systems Cu-Sb-Bi-S(e) and Cu...
Due to the availability and low cost of the elements, the semiconductor systems Cu-Sb-Bi-S(e) and Cu...
Due to the availability and low cost of the elements, the semiconductor compounds in the system Cu-S...
Due to the availability and low cost of the elements, the semiconductor system Cu-Sb-S has been stud...
Cu3SbS3 is a novel chalcogenide semiconductor with p-type conductivity and an energy bandgap of 1.84...
In its “Strategic Research Agenda for Photovoltaic Solar Energy Technology”[1], the European Union h...
Thin film heterojunction solar cells based on chalcopyrites such as CuIn(Ga)Se2 (CIGS) have achieved...
In this paper we present a method to produce polycristalline CuSbS2 thin films through a solid-state...
CuSbSe2 is a promising absorber material for thin film solar cells because of its chemistry similari...
In this paper we present amethod to produce polycrystalline CuSbS2 thin ?lms tbrough a solid-state r...
Copper antimony sulfide (CAS) is a ternary material that is of research interest for thin film photo...
With an increasing demand for fossil-free energy the development of efficient solar cells made from ...
Magnetron sputtered Cu-Sb metallic precursors were sulphidised on glass and molybdenum/glass substra...
Thin films of CuSbS2 and Cu3BiS3 were produced by conversion of stacked and co-electroplated metal p...
Due to the availability and low cost of the elements, the ternary Cu–Sb–S and Cu–Sb–Se semiconductor...
Due to the availability and low cost of the elements, the semiconductor systems Cu-Sb-Bi-S(e) and Cu...
Due to the availability and low cost of the elements, the semiconductor systems Cu-Sb-Bi-S(e) and Cu...
Due to the availability and low cost of the elements, the semiconductor compounds in the system Cu-S...
Due to the availability and low cost of the elements, the semiconductor system Cu-Sb-S has been stud...
Cu3SbS3 is a novel chalcogenide semiconductor with p-type conductivity and an energy bandgap of 1.84...
In its “Strategic Research Agenda for Photovoltaic Solar Energy Technology”[1], the European Union h...
Thin film heterojunction solar cells based on chalcopyrites such as CuIn(Ga)Se2 (CIGS) have achieved...
In this paper we present a method to produce polycristalline CuSbS2 thin films through a solid-state...
CuSbSe2 is a promising absorber material for thin film solar cells because of its chemistry similari...
In this paper we present amethod to produce polycrystalline CuSbS2 thin ?lms tbrough a solid-state r...
Copper antimony sulfide (CAS) is a ternary material that is of research interest for thin film photo...
With an increasing demand for fossil-free energy the development of efficient solar cells made from ...
Magnetron sputtered Cu-Sb metallic precursors were sulphidised on glass and molybdenum/glass substra...
Thin films of CuSbS2 and Cu3BiS3 were produced by conversion of stacked and co-electroplated metal p...