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Correlation of Local Isomerization Induced Lateral and Terminal Torsions with Performance and Stability of Organic Photovoltaics.
Fan, Baobing; Gao, Wei; Zhang, Rui; Kaminsky, Werner; Lin, Francis R; Xia, Xinxin; Fan, Qunping; Li, Yanxun; An, Yidan; Wu, Yue; Liu, Ming; Lu, Xinhui; Li, Wen Jung; Yip, Hin-Lap; Gao, Feng; Jen, Alex K-Y.
Affiliation
  • Fan B; Department of Chemistry, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Gao W; Hong Kong Institute for Clean Energy, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Zhang R; Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Kaminsky W; Hong Kong Institute for Clean Energy, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Lin FR; Department of Physics, Chemistry and Biology (IFM), Linköping University, Linköping 58183, Sweden.
  • Xia X; Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.
  • Fan Q; Department of Chemistry, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Li Y; Hong Kong Institute for Clean Energy, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • An Y; Department of Physics, The Chinese University of Hong Kong, New Territories, Hong Kong 999077, China.
  • Wu Y; State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, P. R. China.
  • Liu M; Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Lu X; Hong Kong Institute for Clean Energy, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Li WJ; Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Yip HL; Hong Kong Institute for Clean Energy, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Gao F; Department of Materials Science and Engineering, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
  • Jen AK; Hong Kong Institute for Clean Energy, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
J Am Chem Soc ; 145(10): 5909-5919, 2023 Mar 15.
Article in En | MEDLINE | ID: mdl-36877211
ABSTRACT
Organic photovoltaics (OPVs) have achieved great progress in recent years due to delicately designed non-fullerene acceptors (NFAs). Compared with tailoring of the aromatic heterocycles on the NFA backbone, the incorporation of conjugated side-groups is a cost-effective way to improve the photoelectrical properties of NFAs. However, the modifications of side-groups also need to consider their effects on device stability since the molecular planarity changes induced by side-groups are related to the NFA aggregation and the evolution of the blend morphology under stresses. Herein, a new class of NFAs with local-isomerized conjugated side-groups are developed and the impact of local isomerization on their geometries and device performance/stability are systematically investigated. The device based on one of the isomers with balanced side- and terminal-group torsion angles can deliver an impressive power conversion efficiency (PCE) of 18.5%, with a low energy loss (0.528 V) and an excellent photo- and thermal stability. A similar approach can also be applied to another polymer donor to achieve an even higher PCE of 18.8%, which is among the highest efficiencies obtained for binary OPVs. This work demonstrates the effectiveness of applying local isomerization to fine-tune the side-group steric effect and non-covalent interactions between side-group and backbone, therefore improving both photovoltaic performance and stability of fused ring NFA-based OPVs.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Am Chem Soc Year: 2023 Document type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Am Chem Soc Year: 2023 Document type: Article Affiliation country: China
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