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Crystallization Thermodynamics Regulation of 1.85 eV Wide-Bandgap Perovskite for Efficient and Stable Perovskite-Organic Tandem Photovoltaics

  • Guanshui Xie
  • , Huan Li
  • , Jun Fang
  • , Xin Wang
  • , Haichen Peng
  • , Dongxu Lin
  • , Nuanshan Huang
  • , Lin Gan
  • , Wenjia Li
  • , Ruixuan Jiang
  • , Tongle Bu*
  • , Fuzhi Huang
  • , Sisi He*
  • , Longbin Qiu*
  • *Corresponding author for this work
  • Southern University of Science and Technology
  • Wuhan University of Technology
  • University Town of Shenzhen

Research output: Contribution to journalArticlepeer-review

Abstract

Wide-band gap perovskite with adjustable band gaps can be integrated with organic solar cells to form tandem solar cells (TSCs), thereby surpassing the Shockley–Queisser limit. However, increasing Br content to elevate the band gap above 1.8 eV complicates crystallization, leading to inferior film quality and defects due to the unmanageable evolution of intermediate phases. Surface passivation improves crystallization but hard to moderate the inhomogeneous component distributions and defects in the bulk phase. Here, we introduce a diammonium salt as an additive to regulate the homogeneity and crystallization of perovskite film, eliminating the low-dimensional intermediate phase for orientated crystallization of 1.85 eV perovskite, resulting in efficient wide-band gap perovskite solar cells with an impressive open-circuit voltage (Voc) of 1.379 V and operational stability remaining 85 % of their initial efficiency after illumination for 1200 h. Furthermore, perovskite-organic TSCs achieve a champion power conversion efficiency of 24.03 % and a high Voc of 2.108 V, one of the highest Voc for perovskite-organic TSCs.

Original languageEnglish
Article numbere202501764
JournalAngewandte Chemie - International Edition
Volume64
Issue number17
DOIs
StatePublished - 17 Apr 2025
Externally publishedYes

Keywords

  • Low-dimensional intermediate phase
  • Perovskite-organic tandem solar cells
  • Reduced voltage loss
  • Suppressed phase segregation
  • Wide-band gap perovskite

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