Air-Processed and Water-Stable Perovskite Solar Cells Enabled by a Fishing-Net-Inspired Interfacial Network

  • Albab, Muh Fadhil
  • Jahandar, Muhammad
  • Kim, Ah Ra
  • Heo, Jinhee
  • Kim, Yong Hyun
  • ... Kim, Gi-Hwan
  • 외 5명
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초록

Practical deployment of perovskite solar cells is hindered by fragile interfaces that accelerate degradation under moisture, heat, ion migration, and mechanical stress, particularly during ambient processing. Here, we introduce a fishing-net-inspired interfacial molecular network that imparts intrinsic durability through coordination chemistry and interfacial dipole engineering. The metal-anchored hierarchical network integrates transition metal nodes, rigid small-molecule frameworks, and dense amine-functionalized polymer sub-networks into a netlike architecture that enhances charge extraction while suppressing bidirectional ion migration. Devices incorporating this interlayer achieve power conversion efficiencies of 26.19% (1.53 eV), 24.11% (1.61 eV), and 20.00% (1.77 eV), with open-circuit voltages and fill factors all exceeding 90% of the Shockley-Queisser radiative limit. Notably, this performance is maintained even in wide-bandgap flexible devices. Flexible perovskite solar cells fabricated entirely under ambient air achieve 23.03% efficiency and retain 95% of their initial performance after 10,000 bending cycles. Moreover, the devices exhibit suppressed degradation during direct water immersion and reach a T95 exceeding 2000 h under ambient conditions without encapsulation, establishing a broadly applicable interfacial design strategy for durable optoelectronics.

키워드

Air-processed perovskiteFlexible perovskite solar cellsHigh efficiencyInterfacial modificationWater resistanceOPERATIONAL STABILITY
제목
Air-Processed and Water-Stable Perovskite Solar Cells Enabled by a Fishing-Net-Inspired Interfacial Network
저자
Albab, Muh FadhilJahandar, MuhammadKim, Ah RaHeo, JinheeKim, Yong HyunKim, YoungkyooKim, Gi-HwanSeo, Ji-YounCho, ShinukKim, SoyeonLim, Dong Chan
DOI
10.1007/s40820-026-02295-5
발행일
2026-07
유형
Article
저널명
Nano-Micro Letters
18
1