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A binary 2D perovskite passivation for efficient and stable perovskite/silicon tandem solar cells

  • Fengtao Pei
  • , Yihua Chen
  • , Qianqian Wang
  • , Liang Li
  • , Yue Ma
  • , Huifen Liu
  • , Ye Duan
  • , Tinglu Song
  • , Haipeng Xie
  • , Guilin Liu
  • , Ning Yang
  • , Ying Zhang
  • , Wentao Zhou
  • , Jiaqian Kang
  • , Xiuxiu Niu
  • , Kailin Li
  • , Feng Wang
  • , Mengqi Xiao
  • , Guizhou Yuan
  • , Yuetong Wu
  • Cheng Zhu, Xueyun Wang, Huanping Zhou, Yiliang Wu, Qi Chen
  • Beijing Institute of Technology
  • Peking University
  • Ltd.
  • Central South University
  • Jiangnan University
  • School of Aerospace Engineering, Beijing Institute of Technology

科研成果: 期刊稿件文章同行评审

52 引用 (Scopus)

摘要

To achieve high power conversion efficiency in perovskite/silicon tandem solar cells, it is necessary to develop a promising wide-bandgap perovskite absorber and processing techniques in relevance. To date, the performance of devices based on wide-bandgap perovskite is still limited mainly by carrier recombination at their electron extraction interface. Here, we demonstrate assembling a binary two-dimensional perovskite by both alternating-cation-interlayer phase and Ruddlesden−Popper phase to passivate perovskite/C60 interface. The binary two-dimensional strategy takes effects not only at the interface but also in the bulk, which enables efficient charge transport in a wide-bandgap perovskite solar cell with a stabilized efficiency of 20.79% (1 cm2). Based on this absorber, a monolithic perovskite/silicon tandem solar cell is fabricated with a steady-state efficiency of 30.65% assessed by a third party. Moreover, the tandem devices retain 96% of their initial efficiency after 527 h of operation under full spectral continuous illumination, and 98% after 1000 h of damp-heat testing (85 °C with 85% relative humidity).

源语言英语
文章编号7024
期刊Nature Communications
15
1
DOI
出版状态已出版 - 12月 2024
已对外发布

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