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May 15, 2026Journal of the American Chemical Society4 citations

Cleaving Fused-Ring Conjugated Structure and Introducing Aggregation-Induced Emission Effect Enable over 20% Efficiency Organic Solar Cells

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SGSheng GeJRJiawei RuQGQing Guo

Key Points

  • To investigate the effects of fused-ring structure cleaving and aggregation-induced emission on the efficiency of organic solar cells.
  • Fabricated binary organic solar cells (OSCs) using D18/AQ-NI.
  • Created ternary OSCs by incorporating AQ-NI into a bulk-heterojunction structure.
  • Measured power conversion efficiency (PCE) of different OSC configurations.
  • Binary OSCs achieved a maximum PCE of 19.14%.
  • Ternary OSCs achieved a PCE of 20.22%, outperforming the binary device (PCE = 19.39%).
  • Enhanced charge carrier transport due to favorable phase separation was observed.

Abstract

of 0.960 V. Moreover, the becoming stacking characteristics of AQ-NI facilitate the modulation of aggregation behavior in the active layer, resulting in a favorable phase-separated morphology and enhanced charge carrier transport. As a result, the layer-by-layer (LBL)-fabricated binary OSCs based on D18/AQ-NI achieved a high PCE of 19.14%. In addition, AQ-NI could serve as a guest molecule in a bulk-heterojunction structure, and D18:L8-BO:AQ-NI-based ternary OSCs realized an improved PCE of 20.22% in comparison with the D18:L8-BO-based binary device (PCE = 19.39%). Our findings provide a simple and promising strategy for designing high-performance NFAs with AIE effect and establish a fundamental correlation between AIE properties and OSC performance.

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Cite This Study

Ge et al. (2026) studied this question.

synapsesocial.com/papers/6a06b9a9e7dec685947ac74chttps://doi.org/10.1021/jacs.5c22943
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