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Upscaling Perovskite Photovoltaics: from 156 cm2 Modules to 0.73 M2 Panels
by
Mariani, Paolo
, Viskadouros, George
, Pescetelli, Sara
, Kymakis, Emmanuel
, Rogdakis, Konstantinos
, Spiliarotis, Emmanuel
, Vesce, Luigi
, Bellani, Sebastiano
, Agresti, Antonio
, Leonardi, Enrico
, Bonaccorso, Francesco
, Carlo, Aldo Di
, Giacomo, Francesco Di
, Nikbakht, Hafez
in
Competition
/ Efficiency
/ Graphene
/ Iodine
/ Manufacturing
/ perovskite solar modules
/ perovskite solar panel
/ photovoltaic
/ Reproducibility
/ solar cell
/ Solar energy
/ Solar farms
/ up scaling
2025
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Upscaling Perovskite Photovoltaics: from 156 cm2 Modules to 0.73 M2 Panels
by
Mariani, Paolo
, Viskadouros, George
, Pescetelli, Sara
, Kymakis, Emmanuel
, Rogdakis, Konstantinos
, Spiliarotis, Emmanuel
, Vesce, Luigi
, Bellani, Sebastiano
, Agresti, Antonio
, Leonardi, Enrico
, Bonaccorso, Francesco
, Carlo, Aldo Di
, Giacomo, Francesco Di
, Nikbakht, Hafez
in
Competition
/ Efficiency
/ Graphene
/ Iodine
/ Manufacturing
/ perovskite solar modules
/ perovskite solar panel
/ photovoltaic
/ Reproducibility
/ solar cell
/ Solar energy
/ Solar farms
/ up scaling
2025
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Upscaling Perovskite Photovoltaics: from 156 cm2 Modules to 0.73 M2 Panels
by
Mariani, Paolo
, Viskadouros, George
, Pescetelli, Sara
, Kymakis, Emmanuel
, Rogdakis, Konstantinos
, Spiliarotis, Emmanuel
, Vesce, Luigi
, Bellani, Sebastiano
, Agresti, Antonio
, Leonardi, Enrico
, Bonaccorso, Francesco
, Carlo, Aldo Di
, Giacomo, Francesco Di
, Nikbakht, Hafez
in
Competition
/ Efficiency
/ Graphene
/ Iodine
/ Manufacturing
/ perovskite solar modules
/ perovskite solar panel
/ photovoltaic
/ Reproducibility
/ solar cell
/ Solar energy
/ Solar farms
/ up scaling
2025
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Upscaling Perovskite Photovoltaics: from 156 cm2 Modules to 0.73 M2 Panels
Journal Article
Upscaling Perovskite Photovoltaics: from 156 cm2 Modules to 0.73 M2 Panels
2025
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Overview
This study tackles the challenge of upscaling perovskite solar modules (PSMs) to attain high power conversion efficiencies (PCEs) suitable for industrial applications. Through systematic experimentation, a remarkable PCE of 17.68% for PSMs fabricated on a substrate with dimensions of 15.6 cm×15.6 cm is achieved. By refining the cell interconnection design, a geometric fill factor (GFF) of 96.4% is obtained, marking a significant milestone in bridging the performance gap between individual cells and modules. Building on this success, it is fabricated and tested large‐area perovskite solar panels (PSPs) with an area of 0.73 m2, integrating the optimized PSMs. This work not only demonstrates the feasibility of large‐scale perovskite‐based photovoltaic systems but also sets a new benchmark for the PCE and scalability of these technologies, paving the way for their practical application in renewable energy generation. From lab to sunlight: perovskite photovoltaics are scaled from 156 cm² large area modules to 0.73 m² panels. With 17.68% efficiency at module level and a stron 12% PCE in outdoor conditions, this advance represents a significant step toward real‐world deployment, paving the way from innovation to practical application.
Publisher
John Wiley & Sons, Inc,John Wiley and Sons Inc,Wiley
Subject
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