Nicolas Barreau
0000-0002-8423-153X
114 papers found
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Unveiling the role of copper content in the crystal structure and phase stability of epitaxial Cu(In,Ga)S2 films on GaP/Si(001)
Stability of Cu(InxGa1−x)Se2 Solar Cells Utilizing RbF Postdeposition Treatment under a Sulfur Atmosphere
Epitaxial growth of CIGSe layers on GaP/Si(001) pseudo-substrate for tandem CIGSe/Si solar cells
Carbon Dioxide Reduction to Methanol with a Molecular Cobalt‐Catalyst‐Loaded Porous Carbon Electrode Assisted by a CIGS Photovoltaic Cell**
Detrimental copper-selenide bulk precipitation in CuIn1-xGaxSe2 thin-film solar cells. A possible reason for the limited performance at large x?
Photocathode functionalized with a molecular cobalt catalyst for selective carbon dioxide reduction in water
Improved CuGaSe2 absorber properties through a modified co-evaporation process
Electrostatic potential fluctuations and light‐soaking effects in Cu(In,Ga)Se2 solar cells
Numerical modelling of the performance-limiting factors in CZGSe solar cells
Sn substitution by Ge: Strategies to overcome the open circuit voltage deficit of kesterite solar cells
Layered Quaternary Compounds in the Cu2S–In2S3–Ga2S3 system
Propagation mechanism of reverse bias induced defects in Cu(In,Ga)Se2 solar cells
Composition‐Dependent Passivation Efficiency at the CdS/CuIn1-xGaxSe2 Interface
Signatures of extended defects in Cu(In,Ga)Se2 observed using capacitance spectroscopy techniques
Material Property Changes in Defects Caused by Reverse Bias Exposure of CIGS Solar Cells
Effects of KF and RbF post deposition treatments on the growth of the CdS buffer layer on CIGS thin films - a comparative study
Impact of KF-post deposition treatment on Cu(In,Ga)Se2 surface and Cu(In,Ga)Se2/CdS interface sulfurization
Wide band gap kesterite absorbers for thin film solar cells: potential and challenges for their deployment in tandem devices
Defects characterization in thin films photovoltaics materials by correlated high-frequency modulated and time resolved photoluminescence: An application to Cu(In,Ga)Se2
Concentration of defects responsible for persistent photoconductivity in Cu(In,Ga)Se2: Dependence on material composition
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