Cross-Correlation Between Crystallinity and Optoelectronic Properties of Mixed-Perovskite Thin Films Through Multiple Time-Resolved Spectroscopy

  • Park, Junho
  • Kang, Bong Joo
  • Seo, Gabkyung
  • Kim, Juwon
  • Park, Tae Gwan
  • ... Shin, Seong Sik
  • 외 6명
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초록

A power conversion efficiency (PCE) exceeding 25% is achievable using perovskite solar cells (PSCs), with compositional engineering as the most effective strategy for high-efficiency PSCs. However, the understanding of structural properties, charge-carrier dynamics, and photoelectric properties, crucial for solar cell performance, still remains insufficient to establish a correlation with device performance for improving the PCE and stability of PSCs. This study uncovers the crucial links between structural disorder, charge-carrier dynamics, and photoelectric properties of mixed-perovskite (FAPbI3)1-x(MAPbBr3)x thin films by investigating device performance for different mol%. Structural and morphological analyses reveal that the mixed perovskite-thin-film disorder exhibits composition dependence in the form of a checkmark trend, with a minimum near 0.8 mol%. Time-resolved transient absorption spectroscopy demonstrates that charge-carrier dynamics and optoelectronic properties exhibit a corresponding dependence on disorder. As the disorder of the perovskite thin film decreases, the trap density decreases, charge-carrier loss decreases during the thermalization process, and the carrier lifetime is prolonged. Optical pump-THz probe measurements show 20% effective mobility and a diffusion length of 34%. The device performance shows composition dependence and superior PCE is achieved at 0.8 mol%. This study highlights the significance of charge-carrier dynamics in optimizing mixed perovskite composition for enhanced PCE and stability of PSCs. This study comprehensively clarified the crucial correlation between crystalline disorder, charge-carrier dynamics in mixed perovskite, and solar cell performance. Incorporating a trace amount of MAPbBr3 additive effectively mitigates and reduces the structural disorder of FAPbI3, resulting in excellent charge-carrier dynamics and improved photoelectric properties. These enhanced material characteristics contribute to achieving the highest power conversion efficiency in solar cells. image

키워드

charge carrier dynamicscrystalline disordermixed perovskitesphotovoltaic performancetime-resolved spectroscopyCHARGE-CARRIER MOBILITIESSOLAR-CELLSHIGH-PERFORMANCEHALIDEFORMAMIDINIUMEFFICIENTDYNAMICSCRYSTALLIZATIONTRIHALIDEEXCITONS
제목
Cross-Correlation Between Crystallinity and Optoelectronic Properties of Mixed-Perovskite Thin Films Through Multiple Time-Resolved Spectroscopy
저자
Park, JunhoKang, Bong JooSeo, GabkyungKim, JuwonPark, Tae GwanNam, SeongsikYoo, Jason J.Lee, KitaeJeong, Young UkPark, MyeongkeeShin, Seong SikRotermund, Fabian
DOI
10.1002/aenm.202400225
발행일
2025-01
유형
Article; Early Access
저널명
Advanced Energy Materials
15
2