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

Author:

Liu Bin,Sun HuiliangORCID,Lee Jin-Woo,Jiang Zhengyan,Qiao Junqin,Wang Junwei,Yang Jie,Feng Kui,Liao Qiaogan,An Mingwei,Li Bolin,Han Dongxue,Xu BaominORCID,Lian Hongzhen,Niu LiORCID,Kim Bumjoon J.ORCID,Guo XugangORCID

Abstract

AbstractDegradation 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

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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