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May 7, 2026Journal of Materials Chemistry C0 citations

Optimized Fibril Morphology of Polymer Donor by Increasing Dipole-Dipole Interaction via Additive Toward Efficient Organic Solar Cells

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YSYu ShenHGHanyue GaoZYZiwen Yu

Key Points

  • The research aims to enhance charge transport in organic solar cells by optimizing polymer fibril morphology.
  • Investigated the impact of polymer fibril length on charge transport in organic solar cells.
  • Examined the role of dipole-dipole interactions in polymer morphology enhancement.
  • Utilized additives to improve the extension of polymer fibrils.
  • Optimized fibril morphology leads to significantly improved charge transport in organic solar cells.
  • Increased dipole-dipole interactions contributed to the effective elongation of polymer fibrils.

Abstract

The extension of polymer fibrils is anticipated to enhance charge transport in organic solar cells (OSCs). However, further extending the length of polymer fibrils remains challenging due to the weak...

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Cite This Study

Shen et al. (2026) studied this question.

synapsesocial.com/papers/69fbe382164b5133a91a2d1dhttps://doi.org/10.1039/d6tc00705h
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