4.8 Article

Rational Tuning of Molecular Interaction and Energy Level Alignment Enables High-Performance Organic Photovoltaics

Journal

ADVANCED MATERIALS
Volume 31, Issue 43, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.201904215

Keywords

driving force; energy alignment; morphology; organic photovoltaics; organic solar cells

Funding

  1. Air Force Office of Scientific Research (AFOSR) [FA2386-18-1-4094]
  2. Office of Naval Research (ONR) [N00014-17-1-2484]
  3. National Key Scientific Instrument and Equipment Development Projects of China [2017YFA0206600]
  4. National Natural Science Foundation of China [51773208]
  5. Science Fund for Distinguished Young Scholars of Hunan Province [2017JJ1029]

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The performance of organic photovoltaics (OPVs) has rapidly improved over the past years. Recent work in material design has primarily focused on developing near-infrared nonfullerene acceptors with broadening absorption that pair with commercialized donor polymers; in the meanwhile, the influence of the morphology of the blend film and the energy level alignment on the efficiency of charge separation needs to be synthetically considered. Herein, the selection rule of the donor/acceptor blend is demonstrated by rationally considering the molecular interaction and energy level alignment, and highly efficient OPV devices using both-fluorinated or both-nonfluorinated donor/acceptor blends are realized. With the enlarged absorption, ideal morphology, and efficient charge transfer, the devices based on the PBDB-T-F/Y1-4F blend and PBDB-T-F/Y6 exhibit champion power conversion efficiencies as high as 14.8% and 15.9%, respectively.

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