Results 71 to 80 of about 1,858 (175)
Effect of Dust Deposition on the Performance of Thin Film Solar Cell
The effect of dust on the performances of the thin-film solar cell CZTS (Cu2ZnSnS4) was investigated. With the use of the spectrophotometric measuring instrument, an experimental study was made on one piece of glass of 10X10 cm2 with different levels of
Mahfoud Abderrezek, Mohamed Fathi
doaj +1 more source
CsPbI3 has recently received tremendous attention as a possible absorber of perovskite solar cells (PSCs). However, CsPbI3-based PSCs have yet to achieve the high performance of the hybrid PSCs. In this work, we performed a density functional theory (DFT)
Alam, Intekhab +5 more
core
Optimization of the absorber layer thicknesses and the surface defect densities of CdTe/Si tandem device [PDF]
In this research, the performance variation of a newly modeled tandem device was investigated. A thin-film photovoltaic tandem device was created with a CdS/CdTe top cell configuration and a thick Si bottom cell configuration.
Attygalle , M.L.C. +2 more
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Emerging solution‐processed Ag–Bi and Cu–Sn chalcogenides offer a low‐cost route to efficient near‐infrared photovoltaics. This review highlights their promise, pinpoints critical bottlenecks, and proposes strategies to enhance the performance and viability of sub‐1.1 eV absorbers.
Rashi Kedia +4 more
wiley +1 more source
Perovskite solar cells (PSCs) have gained a lot of attention due to their high efficiency and low cost. In this research paper, a methylammonium tin iodide (CH3NH3SnI3) based solar cell was simulated using a one-dimensional solar cell capacitance ...
Matthew I. Amanyi +12 more
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In the present contribution, we determine the effect of light wavelength variation on the performances of the non-polar InGaN-based solar cells in order to find the optimum light wavelength that yields a high efficiency.
Lourassi Madi +2 more
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Optimization of perovskite solar cell with MoS2-based HTM layer using hybrid L27 Taguchi-GRA based genetic algorithm [PDF]
This article proposes an optimization method to predictively model the perovskite solar cell with molybdenum disulfide (MoS2) based inorganic hole transport material (HTM) for improved fill factor (FF) and power conversion efficiency (PCE) by finding the
Ahmad Jalaludin, Nabilah +6 more
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Improved performance of Silicon solar cells by ZnMgO front laye [PDF]
Silicon solar cells play a dominant role in the photovoltaic market. However, their manufacturing process is quite expensive and involves complex processes.
Bahfir, Amel +3 more
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Unified technology computer‐aided design model connecting geometry, band alignment, and intrinsic perovskite parameters to efficiency in inverted perovskite solar cells. Understanding the interplay of multiple material parameters is essential to approaching the theoretical efficiency limits of inverted perovskite solar cells (PSCs).
Chien‐Cheng Li +3 more
wiley +1 more source
Enhancing InGaN Solar Cell Performance Under Concentrated Sunlight: A SCAPS‐1D Simulation Approach
This study investigates the effects of concentrated sunlight on the performance of p-In0.01Ga0.99N/p-InxGa1−xN/n-InxGa1−xN (PPN) solar cells. We explore five InGaN‐based PPN solar cell configurations, characterized by varying indium mole fractions (x=0.1,
Habib Ullah Manzoor +3 more
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