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April 3, 2026Solar Energy Materials and Solar Cells2 citationsOpen Access

Revive or reuse: Environmental and energy insights into mesoporous perovskite solar cells recycling

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ŠJŠimon JechMHMahboubeh HadadianKMKati Miettunen

Key Points

  • The aim is to evaluate recycling strategies for mesoporous perovskite solar cells focusing on energy and environmental impacts.
  • Modelled revival and layer-reuse strategies for carbon-based and nickel-based perovskite solar cells.
  • Conducted energy return on energy investment analysis.
  • Performed life cycle assessment from cradle to second-life.
  • Revival method yielded a higher energy return of 43 compared to reuse methods.
  • Revival had lower life cycle impacts, as low as 8 g CO2-eq./kWh, versus 8.8 g CO2-eq./kWh for the ZrO2 electrode.
  • Nickel-based cells exhibited significantly higher environmental impacts compared to carbon-based cells.

Abstract

With growing interest in perovskite solar cells, identifying the optimal recycling strategy becomes important. Strategies focusing on revival or layer-reuse were introduced. Yet their energy footprints and environmental impacts should be understood. Thus, revival – the highest level of recycling – and layer-reuse of carbon-based mesoporous perovskite solar cells were modelled alongside the revival of NiO- and Au-NiO-based cells. Subsequent analysis focused on energy return on energy investment combined with life cycle assessment investigating systems from cradle to end of second-life (second-life after recycling). The results showed that revival had higher return of energy (43) while having lower impacts (as low as 8 g CO 2 -eq./kWh) compared to reuse of ZrO 2 electrode (as low as 8.8 g CO 2 -eq./kWh). However, the degradation and lifetime of second-life devices might render layer-reuse more advantageous, highlighting the small nuances between different recycling levels. Additionally, the environmental impacts of nickel-based cells were significantly higher compared to carbon-based cells. Based on these findings future perovskite solar cell research could target effective revival or reuse. • The revival of mesoporous perovskite solar cells was compared to their remanufacturing. • Revival was found to provide a higher return of energy while having lower life cycle impacts. • The efficiency and lifetime of recycled cells influence which recycling approach is more beneficial. • In general, mesoporous perovskite solar cells are found to be good candidates for sustainable high-value recycling.

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Cite This Study

Jech et al. (2026) studied this question.

synapsesocial.com/papers/69cf5e995a333a821460d118https://doi.org/10.1016/j.solmat.2026.114315
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