AbstractCIS based polycrystalline semiconductors are used for thin film solar cells in laboratory and industry. Nevertheless, even for highly efficient absorbers from different growth techniques, these films are reported to contain inhomogeneities from nanometer to millimeter scale. In this paper we have analyzed inhomogeneities on a sub-μ m scale of CuIn(Se,S)2 solar cell absorber materials processed by annealing of elemental layer precursors using high spatial resolution cathodoluminescence mapping. The measurements were carried out in a scanning electron microscope which has cathodoluminescence (CL) and energy dispersive xray fluorescence (EDX) capabilities to study materials composition. Cathodoluminescence from CuIn(Se,S)2 at energies ...
A single molecular precursor solution is described for the deposition of CuIn S,Se 2 CIS film onto...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
For the production of high efficiency thin film, Cu In,Ga Se2 solar cells, absorber layers with grai...
AbstractCIS based polycrystalline semiconductors are used for thin film solar cells in laboratory an...
As Si-based solar cell technologies approach their theoretical efficiency limits, alternative photov...
Spatial variations of the local open circuit voltage in Cu (In,Ga) Se2 solar cells are analyzed by a...
The present work gives an overview of how electron microscopy and its related techniques are used to...
In this work we present a combination of two spatially resolved experimental methods to analyse cor...
When considering materials to be used as active layers in solar cells, an important required paramet...
In order to further improve Cu(In,Ga)Se2 based thin film solar cell devices, it is important to unde...
The near-surface region of thin-film polycrystalline (PX) CuIn1-xGaxSe2 (CIGS) is considered importa...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
This paper reports the microstructural analysis of S-rich CuIn(S,Se)2 layers produced by electrodepo...
The object of this work is to study the influence of compositional gradients on the microstructure o...
Polycrystalline chalcopyrite absorbers in thin film solar cells exhibit distinct spatial inhomogenei...
A single molecular precursor solution is described for the deposition of CuIn S,Se 2 CIS film onto...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
For the production of high efficiency thin film, Cu In,Ga Se2 solar cells, absorber layers with grai...
AbstractCIS based polycrystalline semiconductors are used for thin film solar cells in laboratory an...
As Si-based solar cell technologies approach their theoretical efficiency limits, alternative photov...
Spatial variations of the local open circuit voltage in Cu (In,Ga) Se2 solar cells are analyzed by a...
The present work gives an overview of how electron microscopy and its related techniques are used to...
In this work we present a combination of two spatially resolved experimental methods to analyse cor...
When considering materials to be used as active layers in solar cells, an important required paramet...
In order to further improve Cu(In,Ga)Se2 based thin film solar cell devices, it is important to unde...
The near-surface region of thin-film polycrystalline (PX) CuIn1-xGaxSe2 (CIGS) is considered importa...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
This paper reports the microstructural analysis of S-rich CuIn(S,Se)2 layers produced by electrodepo...
The object of this work is to study the influence of compositional gradients on the microstructure o...
Polycrystalline chalcopyrite absorbers in thin film solar cells exhibit distinct spatial inhomogenei...
A single molecular precursor solution is described for the deposition of CuIn S,Se 2 CIS film onto...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
For the production of high efficiency thin film, Cu In,Ga Se2 solar cells, absorber layers with grai...