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Cited article:

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Preparation and Characterization of Cu-Ga-Se Films of Ordered Vacancy Compound

S. Nishiwaki, S. Siebentritt and M. Ch. Lux-Steiner
MRS Proceedings 763 (2003)
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Formation of In2Se3 thin films and nanostructures using electrochemical atomic layer epitaxy

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Journal of Electroanalytical Chemistry 559 55 (2003)
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Depth profile of the lattice constant of the Cu-poor surface layer in (Cu2Se)1−x(In2Se3)x evidenced by grazing incidence X-ray diffraction

I.M. Kötschau and H.W. Schock
Journal of Physics and Chemistry of Solids 64 (9-10) 1559 (2003)
https://doi.org/10.1016/S0022-3697(03)00074-X

Role of Surface Band Gap Widening in Cu(In, Ga)(Se, S)2 Thin-Films for the Photovoltaic Performance of ZnO/CdS/Cu(In, Ga)(Se, S)2 Heterojunction Solar Cells

U. Rau and M. Turcu
MRS Proceedings 763 (2003)
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Spectral dependence and Hall effect of persistent photoconductivity in polycrystalline Cu(In,Ga)Se2 thin films

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Journal of Applied Physics 91 (8) 5093 (2002)
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Na effects on CuInSe2: Distinguishing bulk from surface phenomena

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Journal of Applied Physics 91 (7) 4205 (2002)
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The role of structural properties and defects for the performance of Cu-chalcopyrite-based thin-film solar cells

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A new approach to high-efficiency solar cells by band gap grading in Cu(In,Ga)Se2 chalcopyrite semiconductors

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Stability Issues of Cu(In,Ga)Se2-Based Solar Cells

Jean-François Guillemoles, Leeor Kronik, David Cahen, et al.
The Journal of Physical Chemistry B 104 (20) 4849 (2000)
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Electronic properties of CuGaSe2-based heterojunction solar cells. Part I. Transport analysis

V. Nadenau, U. Rau, A. Jasenek and H. W. Schock
Journal of Applied Physics 87 (1) 584 (2000)
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A model for the open circuit voltage relaxation in Cu(In,Ga)Se2heterojunction solar cells

Th. Meyer, M. Schmidt, F. Engelhardt, J. Parisi and U. Rau
The European Physical Journal Applied Physics 8 (1) 43 (1999)
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