AbstractThis work concerns the study and the simulation of a structure containing II-VI semiconductor for photovoltaic application. We studied the influence of the zinc concentration on the various parameters of the alloy Cd1-xZnxTe epitaxied on a CdTe substrate. Indeed, the insertion of zinc increases the band gap of the alloy, which is not ideal to absorb the maximum of the solar spectrum, but for low concentrations of zinc the Cd1-xZnxTe ternary material becomes attractive in the photovoltaic field. We have shown that for a Zinc composition (x) = 5%, the band gap is 1.52eV. And if x = 20%, the gap is 1.62eV.Our simulation studies have demonstrated that by an introduction of a specific Zinc concentration, we successfully simulated the ach...
Cd1-xZnxS thin films have been studied extensively as window layers for solar cell applications. How...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
Ultra-thin CdTe:As/Cd1-xZnxS photovoltaic solar cells with an absorber thickness of 0.5 µm were depo...
Ultra-thin CdTe:As/Cd1-xZnxS photovoltaic solar cells with an absorber thickness of 0.5 μm were depo...
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. ...
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. ...
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. ...
Structural, optical, and electrical properties of thin films of CdS : Zn prepared by the solution – ...
Cd1-xZnxTe alloys have been studied by Surface Photovoltage Spectroscopy (SPS) and Energy Dispersive...
Cd1-xZnxTe alloys have been studied by Surface Photovoltage Spectroscopy (SPS) and Energy Dispersive...
Cd1-XZnXTe is one of the II-VI ternary semiconductor materials whose band gap can be tailored to any...
Cd1-XZnXTe is one of the II-VI ternary semiconductor materials whose band gap can be tailored to any...
© 2018 A major challenge in the fabrication of high band gap II–VI polycrystalline solar cells is to...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
Cd1-xZnxS thin films have been studied extensively as window layers for solar cell applications. How...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
Ultra-thin CdTe:As/Cd1-xZnxS photovoltaic solar cells with an absorber thickness of 0.5 µm were depo...
Ultra-thin CdTe:As/Cd1-xZnxS photovoltaic solar cells with an absorber thickness of 0.5 μm were depo...
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. ...
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. ...
At present most of II–VI semiconductor based solar cells use the CdTe material as an absorber film. ...
Structural, optical, and electrical properties of thin films of CdS : Zn prepared by the solution – ...
Cd1-xZnxTe alloys have been studied by Surface Photovoltage Spectroscopy (SPS) and Energy Dispersive...
Cd1-xZnxTe alloys have been studied by Surface Photovoltage Spectroscopy (SPS) and Energy Dispersive...
Cd1-XZnXTe is one of the II-VI ternary semiconductor materials whose band gap can be tailored to any...
Cd1-XZnXTe is one of the II-VI ternary semiconductor materials whose band gap can be tailored to any...
© 2018 A major challenge in the fabrication of high band gap II–VI polycrystalline solar cells is to...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
Cd1-xZnxS thin films have been studied extensively as window layers for solar cell applications. How...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...
International audienceThe II-VI compounds CdTe and ZnTe form a complete series of solid solutions wi...