Demonstration of overcoming 20% efficiency in kesterite/perovskite tandem solar cells on rigid and flexible substrates

Abstract Among emerging thin-film solar cells, kesterite Cu 2 ZnSn(S,Se) 4 (CZTSSe) absorbers offer several advantages: they are based on earth-abundant, non-toxic elements and combine high stability, tunable bandgap (E g ), and flexibility, key features for integrated photovoltaic (PV) applications. Selenium-rich CZTSSe (E g of 1.1 eV) is an ideal bottom-cell candidate for flexible tandem devices with perovskites, thereby maximising efficiency. However, CZTSSe/perovskite tandems are still underexplored. Here, we report an effective solution - based route for producing high-efficiency CZTSSe bottom cells on both rigid Mo-coated soda-lime-glass and flexible Mo-foil substrates. To optimise absorber morphology and grain size, Na-doping and Ag-alloying were performed. Then, 4-Terminal (4T) tandem devices combining kesterite- and perovskite-based subcells were designed. Solution-processed Cs 0.17 FA 0.83 Pb(I 0.90 Br 0.10 ) 3 perovskites (E g of 1.63 eV) ensured optimal bandgap matching and broadened light harvesting, yielding efficiencies exceeding 22% and 20% for rigid and flexible 4T tandem devices, respectively. This proof-of-concept solution-processed tandem approach represents a promising step toward developing cost-effective and sustainable PV technologies, with promising results for future solar energy applications.

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Publication Details

Journal
Communications Materials
Published
2026-05-30
DOI
https://doi.org/10.1038/s43246-026-01213-x
Primary Topic
Perovskite Materials and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Demonstration of overcoming 20% efficiency in kesterite/perovskite tandem solar cells on rigid and flexible substrates

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Demonstration of overcoming 20% efficiency in kesterite/perovskite tandem solar cells on rigid and flexible substrates

Luigi Angelo Castriotta, Giorgio Tseberlidis, Jessica Barichello, Yuancai Gong, Riccardo Pó, Alex Jiménez‐Arguijo, Paolo Biagini, Vanira Trifiletti, Fabio Matteocci, C. Gobbo, Yassine Raoui, Simona Binetti, Chiara Boldrini, Edgardo Saucedo, Aldo Di Carlo, Paolo Mariani
article en

Abstract

Abstract Among emerging thin-film solar cells, kesterite Cu 2 ZnSn(S,Se) 4 (CZTSSe) absorbers offer several advantages: they are based on earth-abundant, non-toxic elements and combine high stability, tunable bandgap (E g ), and flexibility, key features for integrated photovoltaic (PV) applications. Selenium-rich CZTSSe (E g of 1.1 eV) is an ideal bottom-cell candidate for flexible tandem devices with perovskites, thereby maximising efficiency. However, CZTSSe/perovskite tandems are still underexplored. Here, we report an effective solution - based route for producing high-efficiency CZTSSe bottom cells on both rigid Mo-coated soda-lime-glass and flexible Mo-foil substrates. To optimise absorber morphology and grain size, Na-doping and Ag-alloying were performed. Then, 4-Terminal (4T) tandem devices combining kesterite- and perovskite-based subcells were designed. Solution-processed Cs 0.17 FA 0.83 Pb(I 0.90 Br 0.10 ) 3 perovskites (E g of 1.63 eV) ensured optimal bandgap matching and broadened light harvesting, yielding efficiencies exceeding 22% and 20% for rigid and flexible 4T tandem devices, respectively. This proof-of-concept solution-processed tandem approach represents a promising step toward developing cost-effective and sustainable PV technologies, with promising results for future solar energy applications.

Communications Materials
University of Rome Tor Vergata (IT), Eni (Italy) (IT), Institute of Structure of Matter (IT), University of Milano-Bicocca (IT), Universitat Politècnica de Catalunya (ES)
Institució Catalana de Recerca i Estudis Avançats
Industry, innovation and infrastructure
Openalex Percentile: Top 8%
Perovskite Materials and Applications
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