Natural Resources

Natural Resources

ISSN Print: 2158-706X
ISSN Online: 2158-7086
www.scirp.net/journal/nr
E-mail: [email protected]
"Study of Efficiencies CdTe/CdS Photovoltaic Solar Cell According to Electrical Properties by Scaps Simulation"
written by Serigne Massamba Seck, Elhadji Ndiouga Ndiaye, Modou Fall, Stéphane Charvet,
published by Natural Resources, Vol.11 No.4, 2020
has been cited by the following article(s):
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[2] Development of Sub‐Band in Spray‐Deposited Cr‐Substituted Chalcopyrite Thin Films for Advancing Solar Cell Efficiency
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[4] Theoretical Analysis and Simulation of SiO2 and ZrO2 Based Antireflective Coatings to Improve Crystalline Silicon Solar Cell Efficiency
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[5] Preparation and Numerical Optimization of TiO2:CdS Thin Films in Double Perovskite Solar Cell
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[6] Towards a CdTe Solar Cell Efficiency Promotion: The Role of ZnO: Al and CuSCN Nanolayers
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[7] Theoretical Analysis and Development of Multilayered Ecofriendly Sb2S3‐Based Solar Cell Using SCAPS‐1D Framework
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[8] Theoretical analyses of new tandem solar cells based on CdTe using SCAPS-1D
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[9] Augmenting CIGS Solar Cell Efficiency through Optimization of Layer Thickness and Front Electrode Transparency
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[10] Effect of Cu2Te Back Surface Interfacial Layer on Cadmium Telluride Thin Film Solar Cell Performance from Numerical Analysis. Crystals 2023, 13, 848
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[11] NUMERICAL SIMULATION and MODELING OF THIN FILM HETEROJUNCTION PHOTOVOLTAIC CELLS AND ITS DEGRADATION ANALYSIS
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[12] Preparation and Numerical Optimization of TiO2: CdS Thin Films in Double Perovskite Solar Cell
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[13] Performance analysis and optimization of perovskite solar cell using SCAPS-1D and genetic algorithm
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[14] Design of an eco-friendly perovskite Au/NiO/FASnI3/ZnO0. 25S0. 75/FTO, device structure for solar cell applications using SCAPS-1D
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[15] Hierarchically structured sub-bands in chalcopyrite thin-film solar cell devices
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[16] Incorporation of green solvent for low thermal budget flower-like Copper (I) Iodide (γ-CuI) for high-efficiency solar cell
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[17] Effect of Cu2Te Back Surface Interfacial Layer on Cadmium Telluride Thin Film Solar Cell Performance from Numerical Analysis
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[18] Performance assessment of earth-abundant Kesterite and lead-free chalcogenide-based perovskite solar cells using SCAPS-1D
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[19] Numerical investigation of a novel solar cell based on a modified perovskite with PPP polymer
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[20] A theoretical exploration of lead-free double perovskite La2NiMnO6 based solar cell via SCAPS-1D
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[21] A qualitative study of SnSe thin film solar cells using SCAPS 1D and comparison with experimental results: a pathway towards 22.69% efficiency
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[22] Optimization of CuO/CdTe/CdS/TiO2 solar cell efficiency: a numerical simulation modeling
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[23] Numerical simulation and optimization of n-Al-ZnO/n-CdS/p-CZTSe/p-NiO (HTL)/Mo solar cell System using SCAPS-1D
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[24] Comparison of Various Thin-Film-Based Absorber Materials: A Viable Approach for Next-Generation Solar Cells
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[25] Investigation of electrical parameters of CdTe photovoltaic devices by computational analysis
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[26] Síntesis y Caracterización de Óxido de Titanio usando química verde para su aplicación en celdas fotovoltaicas simuladas por SCAPS-1D
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[27] Enhancement of the Efficiency of the CZTS/Cds/Zno/ITO Solar Cell By Back Reflection and Buffer Layers Using SCAPS-1D
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[28] Simulation and improvement the solar cell Cu2CdSnS4 and study the effect of absorption layer defect
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[29] SCAPS моделювання фотоелектричних гетеросистем на основі ZnO/CdS/CdTe/CuO
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[30] SCAPS modelling of ZnO/CdS/CdTe/CuO photovoltaic heterosystem
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[31] Simulation study of back surface and electron transport layers on Sb2Se3 solar Cell
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[32] SCAPS simulation of ZnO/CdS/CdTe/CuO heterostructure for photovoltaic application
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[33] Cdte/Si Based Highly Efficient Thin Film Tandem Solar Cell Using a Novel Sb2se3 as Electron Transport Layer: Development, Numerical Modelling and Analysis
[34] PHYSICS AND CHEMISTRY OF SOLID STATE
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