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RAIDOU Abderrahim

Email : abderrahim.raidou@uit.ac.ma

Établissement : Faculté des sciences

Laboratoire : Physique des Matériaux et Subatomique

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📚 Publications Scopus — Total : 30
Titre Année 🔗 Voir
Cadmium-Doped ZnS Thin Films via SILAR for Buffer-Layer Applications: An Experimental and mBJ-DFT Study 2026 🔗 Voir
Alloying effect on the magnetic and magnonic properties of a thin-film superlattice based on the magnetic semiconductor Ge1−xFex/Ge 2026 🔗 Voir
Impact of transition metal doping on the optical and electrical properties of zinc sulfide: advancing photovoltaic performance 2025 🔗 Voir
Experimental and Simulation Study of Co3O4 Thin Films: Impact of Nickel Concentration on Physical Properties and Photovoltaic Performance 2025 🔗 Voir
Influence of Solution Acidity on the Growth, Structural and Optical Properties of Co-electrodeposited Cu2SnS3 thin Films: Experimental and DFT Discussions 2025 🔗 Voir
Investigating the impact of copper precursors on the photovoltaic performance of Cu2SnS3 thin film-based solar cells toward an enhanced power conversion efficiency of 9.85% 2025 🔗 Voir
Salt Crystallization and Heritage Materials: Improving Durability by Understanding Porosity and Mineral Composition 2025 🔗 Voir
Effect of deposition time on the physicochemical properties of co-electrodeposited Cu2SnS3 thin films for photovoltaic applications 2024 🔗 Voir
Impact of different rinsing temperatures on SnS thin films created using the SILAR technique 2024 🔗 Voir
A comparative evaluation of the efficiency of CTX (X = S, Se) solar cells with a p+-CTS as back surface field 2024 🔗 Voir
Exploring the correlation between the bandgap engineering and defect density toward high CTS solar cell efficiency 2023 🔗 Voir
Numerical Simulation: Toward High-Efficiency CIGS Solar Cell Through Buffer Layer Replacement 2023 🔗 Voir
Numerical modeling of ZnSnO/CZTS based solar cells 2022 🔗 Voir
The effect of ZnS buffer layer on Cu2SnS3 (CTS) thin film solar cells performance: Numerical approach 2022 🔗 Voir
The temperature effect on the physical properties of PbS thin films produced by the chemical bath deposition (CBD) technique 2022 🔗 Voir
Effect of Complexing Agents on Structural, Morphological, and Optical Properties of Chemically Deposited ZnO Thin Films 2021 🔗 Voir
Effect of Ni doping on optical, structural, and morphological properties of ZnO thin films synthesized by MSILAR: Experimental and DFT study 2021 🔗 Voir
Understanding effects of defects in bulk Cu2ZnSnS4 absorber layer of kesterite solar cells 2020 🔗 Voir
Effects of Back Contact on CZTS Solar Cell—A Numerical Simulation Approach 2020 🔗 Voir
The influence of solution temperature of SnS thin films grown by successive ionic layer adsorption and reaction (SILAR) method 2019 🔗 Voir
Influence of composition ratio on the performances of kesterite solar cell with double CZTS layers—A numerical approach 2019 🔗 Voir
Study of the physical properties of CuO thin films grown by modified SILAR method for solar cells applications 2019 🔗 Voir
A review on the numerical modeling of CdS/CZTS-based solar cells 2019 🔗 Voir
Influence of CZTS layer parameters on cell performance of kesterite thin-film solar cells 2019 🔗 Voir
Numerical modeling of CdTe solar cells thin film investigation by using PC1D model 2018 🔗 Voir
Influence of the layer parameters on the performance of the CdTe solar cells 2018 🔗 Voir
Effect of substrate on ZnO thin films grown by SILAR method 2014 🔗 Voir
Structural, morphological and optical properties of In2 S 3 thin films obtained by SILAR method 2014 🔗 Voir
The influence of rinsing period on the structural and optical properties of ZnO thin films 2014 🔗 Voir
Structural and optical properties of CdS thin films prepared by SILAR method 2013 🔗 Voir