It has been demonstrated that rapid thermal sulphurisation of sputtered Cu In precursor layers is suitable for industrial production of thinfilm photovoltaic modules. The process is relatively straightforward and the underlying fundamental aspects, such as phase formation sequence and reaction rates, have been studied intensively. Using lab scale preparation technology, incorporation of gallium is known to improve transport properties of the absorber and to enable the fabrication of wide gap cells. In this work we have used energy dispersive in situ X ray diffraction to study the sulphurisation of sputtered Cu Ga In precursors. It is the basis for the future development of an industrially feasible production of Cu In,Ga S2 films. Precu...
International audienceThe interest for pure sulfide Cu(In,Ga)S 2 chalcopyrite thin films is increasi...
Energy dispersive X ray diffraction EDXRD has been used to observe in situ the formation of Cu In,...
In this contribution we report about the development of a two step process to prepare Cu In,Ga S2 so...
The purpose of this work is to investigate the reaction paths during the sulfurization of two types ...
We have studied the deposition of Cu In,Ga S2 films for thin film solar cells. In this study, Cu In,...
Phase transformations of GaxSy Cu,In thin film stacks annealed in sulfur vapour were investigated ...
International audienceIn this paper, we report the elaboration of Cu(In,Ga)S2 chalcopyrite thin film...
EPSRC funded project. Research on innovative routes to minimise environmental impacts of chalcopyrit...
Reactive and non reactive magnetron sputtering as a large area, low temperature, industrial depositi...
Ph.D.The reaction of direct current (DC) magnetron sputtered metallic CuIn and CuInGa alloys to a re...
Different approaches to the multi source evaporation of Cu In,Ga S2 for thin film solar cells have b...
In this work, we present the progress made in Cu In,Ga S2 based solar cells prepared from sputtered ...
The emphasis of this work was laid on investigations of processes that would allow in principle the ...
The interest for pure sulfide Cu(In,Ga)S2 chalcopyrite thin films is increasing again because their ...
The aim of this work is to optimize the absorber for Cu(In,Ga)(S,Se)2 thin film photovoltaic cells i...
International audienceThe interest for pure sulfide Cu(In,Ga)S 2 chalcopyrite thin films is increasi...
Energy dispersive X ray diffraction EDXRD has been used to observe in situ the formation of Cu In,...
In this contribution we report about the development of a two step process to prepare Cu In,Ga S2 so...
The purpose of this work is to investigate the reaction paths during the sulfurization of two types ...
We have studied the deposition of Cu In,Ga S2 films for thin film solar cells. In this study, Cu In,...
Phase transformations of GaxSy Cu,In thin film stacks annealed in sulfur vapour were investigated ...
International audienceIn this paper, we report the elaboration of Cu(In,Ga)S2 chalcopyrite thin film...
EPSRC funded project. Research on innovative routes to minimise environmental impacts of chalcopyrit...
Reactive and non reactive magnetron sputtering as a large area, low temperature, industrial depositi...
Ph.D.The reaction of direct current (DC) magnetron sputtered metallic CuIn and CuInGa alloys to a re...
Different approaches to the multi source evaporation of Cu In,Ga S2 for thin film solar cells have b...
In this work, we present the progress made in Cu In,Ga S2 based solar cells prepared from sputtered ...
The emphasis of this work was laid on investigations of processes that would allow in principle the ...
The interest for pure sulfide Cu(In,Ga)S2 chalcopyrite thin films is increasing again because their ...
The aim of this work is to optimize the absorber for Cu(In,Ga)(S,Se)2 thin film photovoltaic cells i...
International audienceThe interest for pure sulfide Cu(In,Ga)S 2 chalcopyrite thin films is increasi...
Energy dispersive X ray diffraction EDXRD has been used to observe in situ the formation of Cu In,...
In this contribution we report about the development of a two step process to prepare Cu In,Ga S2 so...