Barrierless Free Charge Generation in the High‐Performance PM6:Y6 Bulk Heterojunction Non‐Fullerene Solar Cell

Lorena Perdigón‐Toro(University of Potsdam), Huotian Zhang(Linköping University), Anastasia Markina(Max Planck Institute for Polymer Research), Jun Yuan(Central South University), Seyed Mehrdad Hosseini(University of Potsdam), Christian M. Wolff(University of Potsdam), Guangzheng Zuo(University of Potsdam), Martin Stolterfoht(University of Potsdam), Yingping Zou(Central South University), Feng Gao(Linköping University), Denis Andrienko(Max Planck Institute for Polymer Research), Safa Shoaee(University of Potsdam), Dieter Neher(University of Potsdam)
Advanced Materials
January 24, 2020
Cited by 373Open Access
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Abstract

Organic solar cells are currently experiencing a second golden age thanks to the development of novel non-fullerene acceptors (NFAs). Surprisingly, some of these blends exhibit high efficiencies despite a low energy offset at the heterojunction. Herein, free charge generation in the high-performance blend of the donor polymer PM6 with the NFA Y6 is thoroughly investigated as a function of internal field, temperature and excitation energy. Results show that photocurrent generation is essentially barrierless with near-unity efficiency, regardless of excitation energy. Efficient charge separation is maintained over a wide temperature range, down to 100 K, despite the small driving force for charge generation. Studies on a blend with a low concentration of the NFA, measurements of the energetic disorder, and theoretical modeling suggest that CT state dissociation is assisted by the electrostatic interfacial field which for Y6 is large enough to compensate the Coulomb dissociation barrier.


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