Rapid Photonic Processing of Flexible Printed Perovskite Solar Cells for Space Applications
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Nazarbayev University School of Sciences and Humanities
Abstract
Printed flexible perovskite solar cells (PFPSCs) have emerged as a promising lightweight,
durable, and high-specific-power energy source for Earth and space applications. Nevertheless,
their large-scale commercialization remains limited by conventional thermal annealing
processes, which are time-consuming, energy intensive, and less suitable for high-throughput
roll-to-roll manufacturing. In this work, intense pulsed light (IPL) annealing, also referred to as
photonic processing, was investigated as a rapid post-treatment alternative to conventional hot-
plate (HP) annealing for the fabrication of PFPSCs.
Perovskite photo-absorber layers processed under non-annealed (NA), HP annealed, and
optimized IPL annealed techniques were systematically compared in terms of structural, optical,
electronic, photovoltaic, operational stability, and radiation resistance properties. X-ray
diffraction confirmed the formation of the desired ��- phase perovskite structure for all samples,
while a PbI 2 impurity peak was detected in HP film. The optimized IPL films exhibited enhanced
photoluminescence intensity, prolonged charge carrier lifetime, and improved optoelectronic
quality. As a result, the IPL-processed devices achieved the highest average power conversion
efficiency of approximately 12.0% outperforming HP (11.0%) and NA (6.5%) counterparts.
In addition, IPL devices demonstrated improved mechanical robustness and enhanced
photostability, while retaining radiation tolerance comparable to HP devices following heavy-ion
irradiation. These findings establish photonic processing as a rapid and effective alternative to
conventional thermal annealing, with strong potential for scalable roll-to-roll manufacturing of
flexible photovoltaic devices for both Earth-based and aerospace applications.
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Aryslan, Mussakhan (2026) Rapid Photonic Processing of Flexible Printed Perovskite Solar Cells for Space Applications. Nazarbayev University School of Sciences and Humanities
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