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Updated: Oct 7, 2026

Integrating a Triplet-triplet Annihilation Up-conversion System to Enhance Dye-sensitized Solar Cell Response to Sub-bandgap Light
Published on: September 12, 2014
Using Aromatic-Bridge-Tuned Dimer Acceptors to Harmonize Photoluminescence Quantum Yield and Crystallinity for
Yue Chen1,2, Haisheng Ma1, Long Hai3
1State Key Laboratory of Bioinspired Interfacial Materials Science, International Research Center For Carbon Neutralization, Hangzhou International Innovation Institute, Beihang University, Hangzhou, P. R. China.
Abstract:
Suppressing non-radiative energy loss (ΔE3) by enhancing the photoluminescence quantum yield (PLQY) of active-layer materials, particularly the acceptor component, is important for achieving high-performance organic solar cells (OSCs). A key challenge is how to design acceptor materials that attain high PLQY while preserving favorable crystallinity and aggregation behavior, as these properties are often mutually conflicting. Here, we address this challenge by developing a series of dimeric acceptors linked via benzene, naphthalene, and anthracene bridges (named Ph-dimer, Naph-dimer, and Ant-dimer). Although the conjugation length and intrinsic emission of these cores increase from benzene to anthracene, the photovoltaic performance of the resulting dimeric acceptors shows no linear correlation with this trend. Among them, the Naph-dimer optimally balances crystallinity and PLQY, with enhanced molecular packing and reduced disorder, suppressing energy loss (Eloss) and facilitating charge extraction. Consequently, the PM6:Naph-dimer OSC exhibits a power conversion efficiency (PCE) of 18.90%, an open-circuit voltage (Voc) of 0.974 V and a low ΔE3 of 0.192 eV, outperforming PM6:Ph-dimer and PM6:Ant-dimer counterparts. Moreover, incorporating Naph-dimer into a PM6:L8-BO host yields a PCE of 21.02%. These findings indicate that precise bridge modulation is an effective strategy for harmonizing high PLQY with crystalline order in OSCs.
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