Heteroheptacene-based acceptors with thieno[3,2-b]pyrrole yield high-performance polymer solar cells

Author:

Luo Zhenghui12,Ma Ruijie23ORCID,Yu Jianwei4,Liu Heng5,Liu Tao23ORCID,Ni Fan1,Hu Jiahao1,Zou Yang1,Zeng Anping23,Su Chun-Jen6,Jeng U-Ser67,Lu Xinhui5,Gao Feng4,Yang Chuluo1,Yan He2389

Affiliation:

1. Shenzhen Key Laboratory of Polymer Science and Technology, College of Materials Science and Engineering, Shenzhen University , Shenzhen 518060 , China

2. Department of Chemistry and Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration & Reconstruction, Hong Kong University of Science and Technology (HKUST) , Hong Kong, China

3. Hong Kong University of Science and Technology-Shenzhen Research Institute , Shenzhen 518057 , China

4. Department of Physics, Chemistry and Biology (IFM), Linköping University , Linköping SE-58183 , Sweden

5. Department of Physics, Chinese University of Hong Kong , Hong Kong, China

6. Synchrotron Radiation Research Center , Hsinchu Science Park, Hsinchu 30076, China

7. Department of Chemical Engineering, Tsing Hua University , Hsinchu 30013, China

8. Hong Kong University of Science and Technology (HKUST) Light-Emitting Diode and Flat Panel Display Technology Research & Development Center , Foshan 526040 , China

9. Hong Kong University of Science and Technology (HKUST) Foshan Research Institute for Smart Manufacturing , Hong Kong, China

Abstract

Abstract Rationally utilizing and developing synthetic units is of particular significance for the design of high-performance non-fullerene small-molecule acceptors (SMAs). Here, a thieno[3,2-b]pyrrole synthetic unit was employed to develop a set of SMAs (ThPy1, ThPy2, ThPy3 and ThPy4) by changing the number or the position of the pyrrole ring in the central core based on a standard SMA of IT-4Cl, compared to which the four thieno[3,2-b]pyrrole-based acceptors exhibit bathochromic absorption and upshifted frontier orbital energy level due to the strong electron-donating ability of pyrrole. As a result, the polymer solar cells (PSCs) of the four thieno[3,2-b]pyrrole-based acceptors yield higher open-circuit voltage and lower energy loss relative to those of the IT-4Cl-based device. What is more, the ThPy3-based device achieves a power conversion efficiency (PCE) (15.3%) and an outstanding fill factor (FF) (0.771) that are superior to the IT-4Cl-based device (PCE = 12.6%, FF = 0.758). The ThPy4-based device realizes the lowest energy loss and the smallest optical band gap, and the ternary PSC device based on PM6:BTP-eC9:ThPy4 exhibits a PCE of 18.43% and a FF of 0.802. Overall, this work sheds light on the great potential of thieno[3,2-b]pyrrole-based SMAs in realizing low energy loss and high PCE.

Funder

National Key Research and Development Program of China

Ministry of Science and Technology

National Natural Science Foundation of China

Shenzhen Fundamental Research and Discipline Layout project

Hong Kong Research Institute of Textiles and Apparel

Innovation and Technology Commission

Publisher

Oxford University Press (OUP)

Subject

Multidisciplinary

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