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Unifying Charge Generation,Recombination, and Extraction in Low‐Offset Non‐Fullerene Acceptor Organic Solar Cells
Authors:Akchheta Karki  Joachim Vollbrecht  Alexander J Gillett  Philipp Selter  Jaewon Lee  Zhengxing Peng  Nora Schopp  Alana L Dixon  Max Schrock  Vojtech Ndady  Franz Schauer  Harald Ade  Bradley F Chmelka  Guillermo C Bazan  Richard H Friend  Thuc‐Quyen Nguyen
Institution:Akchheta Karki,Joachim Vollbrecht,Alexander J. Gillett,Philipp Selter,Jaewon Lee,Zhengxing Peng,Nora Schopp,Alana L. Dixon,Max Schrock,Vojtech Nádaždy,Franz Schauer,Harald Ade,Bradley F. Chmelka,Guillermo C. Bazan,Richard H. Friend,Thuc‐Quyen Nguyen
Abstract:Even though significant breakthroughs with over 18% power conversion efficiencies (PCEs) in polymer:non‐fullerene acceptor (NFA) bulk heterojunction organic solar cells (OSCs) have been achieved, not many studies have focused on acquiring a comprehensive understanding of the underlying mechanisms governing these systems. This is because it can be challenging to delineate device photophysics in polymer:NFA blends comprehensively, and even more complicated to trace the origins of the differences in device photophysics to the subtle differences in energetics and morphology. Here, a systematic study of a series of polymer:NFA blends is conducted to unify and correlate the cumulative effects of i) voltage losses, ii) charge generation efficiencies, iii) non‐geminate recombination and extraction dynamics, and iv) nuanced morphological differences with device performances. Most importantly, a deconvolution of the major loss processes in polymer:NFA blends and their connections to the complex BHJ morphology and energetics are established. An extension to advanced morphological techniques, such as solid‐state NMR (for atomic level insights on the local ordering and donor:acceptor π? π interactions) and resonant soft X‐ray scattering (for donor and acceptor interfacial area and domain spacings), provide detailed insights on how efficient charge generation, transport, and extraction processes can outweigh increased voltage losses to yield high PCEs.
Keywords:charge extraction  charge generation  charge recombination  non‐fullerene acceptors  resonant soft X‐ray scattering  solid‐state NMR  voltage losses
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