Ternary solvent engineering incorporating hydrogen bonding for FAPbI3 perovskite solar cells

  • Lee, Junyeong; 
  • Muthukrishnan, Akshaiya Padmalatha; 
  • Selvaprakash, Rukesh Kumar; 
  • Kim, Jongbok; 
  • Jo, Sungjin
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초록

This study explores crystallization rate control to improve grain size and surface roughness. Traditional binary solvent engineering has limitations for FAPbI3 films because of rapid solvent evaporation at high annealing temperatures. Accordingly, this research proposes ternary solvent engineering (TSE) using dimethylformamide (DMF), dimethyl sulfoxide (DMSO), and anisole (AN), which delays crystallization by forming hydrogen bonding. This finding demonstrates that AN, which is typically used as an antisolvent, can be effectively utilized as a PbI2 precursor solvent. This approach affords larger grain sizes, reduces surface roughness, and improves charge transport, leading to an improvement in PCE from 12.23 % to 13.85 % by enhancing the fill factor. The results of this study suggest that TSE with AN can significantly enhance the performance of PSCs, providing a new pathway for efficient perovskite film fabrication.

키워드

Perovskite solar cell; Ternary solvent engineering; FAPbI3; Hydrogen bonding; Anisole; HIGH-PERFORMANCE; EFFICIENCY; HYBRID
제목
Ternary solvent engineering incorporating hydrogen bonding for FAPbI3 perovskite solar cells
저자
Lee, Junyeong; Muthukrishnan, Akshaiya Padmalatha; Selvaprakash, Rukesh Kumar; Kim, Jongbok; Jo, Sungjin
DOI
10.1016/j.orgel.2024.107193
발행일
2025-03
유형
Article
저널명
Organic Electronics
권
138