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Ultrafast Kinetics Investigation of a Fluorinated-Benzothiadiazole Polymer with an Increased Excited State Transition Dipole Moment Applied in Organic Solar Cells

  • Pingping Gong
  • , Pengzhi Guo
  • , Yufei Wang
  • , Lihe Yan
  • , Zezhou Liang
  • , Mingqiang Ding
  • , Junfeng Tong
  • , Jianfeng Li
  • , Yangjun Xia

科研成果: 期刊稿件文章同行评审

26 引用 (Scopus)

摘要

The fluorination of polymer donors as an encouraging strategy has been widely applied in organic solar cells (OSCs). In this contribution, the two polymers PDTBDT-SBTEH and PDTBDT-SFBTEH with hydrogen and fluorine substitution were synthesized and used as donors in OSCs. In comparison to the PDTBDT-SBTEH:ITIC-based device, the PDTBDT-SFBTEH:ITIC-based device showed a remarkable enhancement in power conversion efficiency (PCE) of 8.61%, achieving a 20% improvement. The multiple effects of the fluorination on the morphology and device performance were systematically investigated. The density functional theory (DFT) calculations indicated that this fluorinated PDTBDT-SFBTEH with a greater molecular electrostatic potential (ESP) could enhance the intramolecular charge transfer (ICT) effect. In addition, its larger ground to excited state dipole moment (Δμge) induces a lower Coulomb binding energy of the excitons, which is beneficial for charge separation. The DFT-calculated results show that PDTBDT-SFBTEH has a lower bonding energy (Eb) of 0.30 eV and the PDTBDT-SFBTEH exhibits a higher Eb value of 0.38 eV. Ultrafast transient absorption (TA) spectroscopy measurements suggested that the pristine PDTBDT-SFBTEH exhibited a faster electron injection after excitation and that the generated excitons can more easily and quickly separate at the donor/acceptor (D/A) interface. Our results provide deeper insights into fluorinated polymer donors with better performance achieved in OSCs.

源语言英语
页(从-至)9627-9638
页数12
期刊ACS Applied Energy Materials
4
9
DOI
出版状态已出版 - 27 9月 2021

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