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Perovskite Solar Cells for Extreme Environments and Aerospace Applications: Degradation Mechanisms, Engineering Strategies, and AI Prediction

Author

Listed:
  • Aigerim Akylbayeva

    (Laboratory of Engineering Profile, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan)

  • Yerzhan Nussupov

    (Department of Electronics, Telecommunications and Space Technologies, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan)

  • Zhansaya Omarova

    (Department of Standardization, Certification and Metrology, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan)

  • Ayazhan Dossymbekova

    (Laboratory of Engineering Profile, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan)

  • Yevgeniy Korshikov

    (Institute of Experimental and Theoretical Physics (IETP), Al-Farabi Kazakh National University, Al-Farabi Avenue, 71, Almaty 050040, Kazakhstan)

  • Makhabbat Abdizhalel

    (Laboratory of Engineering Profile, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan
    Technology Commercialization Center, Almaty Management University, 227 Rozybakiyev Str., Almaty 050060, Kazakhstan)

  • Bergaliyeva Saltanat

    (Laboratory of Engineering Profile, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan)

  • Abdurakhman Aldiyarov

    (Faculty of Physics and Technology, Al-Farabi Kazakh National University, Al-Farabi Avenue, 71, Almaty 050040, Kazakhstan)

  • Darkhan Yerezhep

    (Laboratory of Engineering Profile, Satbayev University, Satbayev Str., 22, Almaty 040000, Kazakhstan
    Technology Commercialization Center, Almaty Management University, 227 Rozybakiyev Str., Almaty 050060, Kazakhstan
    Faculty of Physics and Technology, Al-Farabi Kazakh National University, Al-Farabi Avenue, 71, Almaty 050040, Kazakhstan)

Abstract

Perovskite solar cells (PSCs) have emerged as a disruptive photovoltaic technology for aerospace and extreme environment applications, driven by their substantial power-to-weight ratio and mechanical flexibility. However, continuous operation under harsh conditions, characterized by the AM0 spectrum, deep vacuum, extreme thermal cycling, and ionizing radiation, exposes the fundamental thermodynamic instability of traditional organic–inorganic hybrid perovskites. This comprehensive review systematically synthesizes 131 recent studies to provide a holistic framework for designing ultrastable, radiation-hardened PSCs. We critically examine the underlying degradation mechanisms, including vacuum-induced volatile desorption, UV-triggered halide segregation, and thermomechanical fracture at buried interfaces. To overcome these critical barriers, we highlight advanced engineering strategies: the transition to all-inorganic CsPbX 3 and lead-free double/chalcogenide perovskites (e.g., Cs 2 SnI 6 , CaHfS 3 ), the implementation of dopant-free inorganic transport layers coupled with self-assembled monolayers (SAMs) for cascade band alignment, and the integration of polymeric scaffolds for fracture energy toughening. Furthermore, we emphasize the imperative shift toward solvent-free vacuum deposition techniques (ALD, PLD). A distinctive focus of this review is the integration of Artificial Intelligence; specifically, we evaluate Deep Learning architectures, such as Long Short-Term Memory (LSTM) networks, for predictive State of Health (SOH) monitoring, underscoring the vital transition from simulated to empirical datasets. Finally, coupled with Material Flow Cost Accounting (MFCA), this review outlines a strategic roadmap for the commercialization and deployment of autonomous, self-diagnosing photovoltaic platforms in next-generation satellite and deep-space missions.

Suggested Citation

  • Aigerim Akylbayeva & Yerzhan Nussupov & Zhansaya Omarova & Ayazhan Dossymbekova & Yevgeniy Korshikov & Makhabbat Abdizhalel & Bergaliyeva Saltanat & Abdurakhman Aldiyarov & Darkhan Yerezhep, 2026. "Perovskite Solar Cells for Extreme Environments and Aerospace Applications: Degradation Mechanisms, Engineering Strategies, and AI Prediction," Clean Technol., MDPI, vol. 8(4), pages 1-33, July.
  • Handle: RePEc:gam:jcltec:v:8:y:2026:i:4:p:111-:d:1992941
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