Surface engineering with oxidized Ti3C2Tx MXene enables efficient and stable p-i-n-structured CsPbI3 perovskite solar cells

  • Heo, Jin Hyuck
  • Zhang, Fei
  • Park, Jin Kyoung
  • Lee, Hyong Joon
  • Lee, David Sunghwan
  • ... Im, Sang Hyuk
  • 외 4명
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초록

All-inorganic CsPbI3 perovskite has a near-ideal band gap, high ther-mal stability, and simple material composition, thus presenting a promising option for developing perovskite/Si tandem solar cells. However, CsPbI3 undergoes a rapid phase transition under exposure to moisture and exhibits a significant performance gap relative to other perovskite compounds, particularly in the p-i-n structure favored for perovskite/Si tandems. Here, we demonstrate highly efficient and stable p-i-n-structured CsPbI3 perovskite solar cells by surface engineering the CsPbI3 layer with oxidized Ti3C2Tx MXene (OMXene) nanoplates via spray coatings. OMXene provides a phys-ical barrier against moisture and improves charge separation at the perovskite-electron transporting layer interface via an enhanced electric field. Consequently, we demonstrated CsPbI3/OMXene-based p-i-n devices with efficiencies of 19.69% for 0.096-cm2 cells and 14.64% for 25-cm2 minimodules. The encapsulated minimodule showed good stability, retaining -85% of the initial efficiency under simultaneous damp heat (85 degrees C/85% relative humidity) and 1-sun light soaking for over 1,000 h.

키워드

CsPbI3inverted device structureminimoduleoxidized MXeneperovskite solar cellsspray coatingstabilityTITANIUM CARBIDESTABILITYSILICONLAYERS
제목
Surface engineering with oxidized Ti3C2Tx MXene enables efficient and stable p-i-n-structured CsPbI3 perovskite solar cells
저자
Heo, Jin HyuckZhang, FeiPark, Jin KyoungLee, Hyong JoonLee, David SunghwanHeo, Su JeongLuther, Joseph M.Berry, Joseph J.Zhu, KaiIm, Sang Hyuk
DOI
10.1016/j.joule.2022.05.013
발행일
2022-07-20
유형
Article
저널명
Joule
6
7
페이지
1672 ~ 1688