Efficient and stable organic solar cells enabled by multicomponent photoactive layer based on one-pot polymerization

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Degradation of the kinetically trapped bulk heterojunction film morphology in organic solar cells (OSCs) remains a grand challenge for their practical application. Herein, we demonstrate highly thermally stable OSCs using multicomponent photoactive layer synthesized via a facile one-pot polymerization, which show the advantages of low synthetic cost and simplified device fabrication. The OSCs based on multicomponent photoactive layer deliver a high power conversion efficiency of 11.8% and exhibit excellent device stability for over 1000 h (>80% of their initial efficiency retention), realizing a balance between device efficiency and operational lifetime for OSCs. In-depth opto-electrical and morphological properties characterizations revealed that the dominant PM6-b-L15 block polymers with backbone entanglement and the small fraction of PM6 and L15 polymers synergistically contribute to the frozen fine-tuned film morphology and maintain well-balanced charge transport under long-time operation. These findings pave the way towards the development of low-cost and long-term stable OSCs.
Publisher
NATURE PORTFOLIO
Issue Date
2023-02
Language
English
Article Type
Article
Citation

NATURE COMMUNICATIONS, v.14, no.1

ISSN
2041-1723
DOI
10.1038/s41467-023-36413-3
URI
http://hdl.handle.net/10203/307316
Appears in Collection
CBE-Journal Papers(저널논문)
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