High-efficiency perovskite photovoltaic system performance by molecular dynamics method: optimizing electron transport thicknesses, hole transport, and anti-reflector …

MB Henda, TA Alkanhal, A Rebey, A Sa'ed… - Engineering Analysis with …, 2023 - Elsevier
The perovskite solar cell was modeled with the assistance of the molecular dynamics (MD)
method to propose a superior configuration for perovskite solar cells and high efficiency for …

Optimization of Cu (In, Ga) Se2 (CIGSe) thin film solar cells parameters through numerical simulation and experimental study

D Valencia, J Conde, A Ashok, CA Meza-Avendaño… - Solar Energy, 2021 - Elsevier
This study utilized the 2-D Silvaco ATLAS simulator to design and optimize the CIGSe thin-
film solar cell (TFSC), considering experimental results from the hybrid-deposited CIGSe thin …

An investigation on the relationship between open circuit voltage and grain size for CZTSSe thin film solar cells fabricated by selenization of sputtered precursors

Y Wei, D Zhuang, M Zhao, Q Gong, R Sun… - Journal of alloys and …, 2019 - Elsevier
The low open circuit voltage (V oc) of Cu 2 ZnSn (S, Se) 4 (CZTSSe) thin film solar cells
limits their efficiency. CZTSSe absorbers were fabricated by sputtering Cu 2 ZnSnS 4 (CZTS) …

Highly efficient photovoltaic energy storage hybrid system based on ultrathin carbon electrodes designed for a portable and flexible power source

B Farhadi, I Marriam, S Yang, H Zhang… - Journal of Power …, 2019 - Elsevier
Integrated perovskite solar capacitor (IPSC) systems are the new paradigm for power
generation and storage. Herein, a novel configuration and combination of materials for an …

Optimizing efficiency of InGaP/GaAs dual-junction solar cells with double tunnel junction and bottom back surface field layers

FZ Kharchich, A Khamlichi - Optik, 2023 - Elsevier
Dual-junction solar cells have permitted to augment markedly efficiency of solar energy
harvesting. This is because they involve a combination of III-V semiconductor materials with …

Use of InGaAs/GaSb quantum ratchet in pin GaAs solar cell for voltage preservation and higher conversion efficiency

GS Sahoo, GP Mishra - IEEE Transactions on Electron Devices, 2018 - ieeexplore.ieee.org
The concept of intermediate band solar cell (IBSC) is evolved through the effective use of the
below bandgap photons, so as to improve upon the existing Shockley-Queisser limit for …

Simulation aided design of a high efficient GaSb based single-junction solar cell

FZ Kharchich, A Khamlichi - International Review of Applied …, 2023 - akjournals.com
Owing to their elevated absorption coefficient, superior resistance to radiation and reduced
effective electron mass, gallium antimonide (GaSb) semiconductors were documented to be …

Efficient use of low-bandgap GaAs/GaSb to convert more than 50% of solar radiation into electrical energy: a numerical approach

GS Sahoo, GP Mishra - Journal of Electronic Materials, 2019 - Springer
A recent trend in photovoltaic technology is to aim to enhance the conversion efficiency of
this energy harvesting technique. Although multijunction solar cells offer high efficiency …

Use of hetero intrinsic layer in GaAs PIN solar cell to improve the intermediate band performance

GS Sahoo, GP Mishra - Materials Science and Engineering: B, 2021 - Elsevier
Intermediate band solar cell (IBSC) uses the below bandgap photons to minimise the
spectral losses and to overcome the thermodynamical efficiency barrier for single junction …

Numerical investigation on efficiency improvement of double layer antireflection coating AZO/buffer/Cu2O/CuO on back-surface fluorine-doped tin oxide …

MT Rizi, MH Shahrokh Abadi - Journal of the Optical Society of …, 2019 - opg.optica.org
Optical and electrical features of Cu 2 O solar cells from simple primitive bufferless AZO/Cu 2
O to complex single/double layer-antireflection coating (S/DLARC) on back-surface fluorine …