Defects passivation and H-diffusion controlled by emitter region in polysilicon solar cells submitted to hydrogen plasma.

S Mahdid, D Belfennache, D Madi… - Journal of Ovonic …, 2023 - search.ebscohost.com
A significant cost reduction in photovoltaic cells could be achieved if they could be made
from thin polycrystalline silicon (poly-Si) films. Despite hydrogenation treatments of poly-Si …

Tuning of passivation efficiency of defects in emitter region of polysilicon solar cells using hydrogen plasma

S Mahdid, D Madi, M Samah, P Pathi - Indian Journal of Physics, 2024 - Springer
Using thin polycrystalline silicon (poly-Si) films reduces the cost of photovoltaic cells.
Although hydrogenation treatments of poly-Si films are necessary to obtain high-energy …

Phosphorus deactivation mechanisms by hydrogenation in the n+ emitter region and its effect on defects passivation in n+pp+ poly-silicon solar cells.

R Ouldamer, D Belfennache, D Madi… - Journal of Ovonic …, 2024 - search.ebscohost.com
Doping level of the n< sup>+ emitter region is an essential parameter that controls the
performance of the n< sup>+ pp< sup>+ poly-silicon solar cells. Also, most poly-silicon n< …

Numerical Simulation Study of The Increase in Electrical Efficiency of the CIGS-Based Solar Cell by SCAPS-1D

K Madoui, A Ghechi, S Madoui… - … Journal of Physics, 2024 - periodicals.karazin.ua
Solar cells are currently the focus of a great deal of research. The aim is to reduce their cost
price. To achieve this, we need to reduce the mass of the materials and increase the …

Understanding the Phosphorus Deactivation in n+ Emitter Region and Its Effect on Defect Passivation in Hydrogenated n+pp+ Poly-Silicon Solar Cells

R Ouldamer, D Madi, D Belfennache - International Conference on …, 2022 - Springer
Doping level of the n+ emitter region is an essential parameter that controls the performance
of the n+ pp+ poly-silicon solar cells. Also, most poly-silicon n+ pp+ solar cell manufacturers …