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March 14, 2026Energies2 citationsOpen Access

Perovskite Solar Cells for Space Applications: Progress, Perspectives, and Remaining Challenges

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VDVera C. M. DuarteLSLino SantosLALuisa Andrade

Key Points

  • This work summarizes advancements in perovskite solar cells (PSCs) for space applications and identifies challenges that need addressing.
  • Reviewed recent developments in PSCs under space-related stressors
  • Analyzed performance factors such as radiation and thermal cycling
  • Evaluated self-healing mechanisms and encapsulation strategies
  • PSCs achieved power conversion efficiencies comparable to silicon devices
  • Demonstrated tolerance to radiation stressors
  • Identified challenges in long-term stability and encapsulation reliability

Abstract

Perovskite solar cells (PSCs) have rapidly evolved into one of the most promising photovoltaic technologies, achieving power conversion efficiencies comparable to established silicon devices while offering unique advantages such as low weight, mechanical flexibility, and low-temperature, solution-based manufacturing. These attributes, combined with recently demonstrated tolerance to high-energy particle irradiation, position PSCs as compelling candidates for next-generation space power systems. This perspective work summarizes recent advances in PSC development for space environments, focusing on their behaviour under key stressors such as radiation (e.g., electrons, protons, gamma rays, and neutrons), ultraviolet exposure, extreme thermal cycling, and ultra-high vacuum. Progress in material design, device architecture, self-healing mechanisms, and encapsulation strategies is discussed, along with early in-orbit and suborbital demonstrations. Remaining challenges, including long-term stability, encapsulation reliability, large-area scalability, and the need for standardized space-qualification protocols, are also outlined. Indeed, PSCs represent a compelling opportunity for next-generation space photovoltaics, provided that targeted materials and engineering solutions address critical issues of encapsulation and durability under combined stressors to ensure reliable operation in harsh extraterrestrial conditions.

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Cite This Study

Duarte et al. (2026) studied this question.

synapsesocial.com/papers/69b4add218185d8a39801e59https://doi.org/10.3390/en19061432
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