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Multi-Selenophene-Containing Narrow Bandgap Polymer Acceptors for All-Polymer Solar Cells with over 15 % Efficiency and High Reproducibility
- Fan, Qunping;
- Fu, Huiting;
- Wu, Qiang;
- Wu, Ziang;
- Lin, Francis;
- ... Woo, Han Young;
- 외 3명
WEB OF SCIENCE
153SCOPUS
152초록
All-polymer solar cells (all-PSCs) progressed tremendously due to recent advances in polymerized small molecule acceptors (PSMAs), and their power conversion efficiencies (PCEs) have exceeded 15 %. However, the practical applications of all-PSCs are still restricted by a lack of PSMAs with a broad absorption, high electron mobility, low energy loss, and good batch-to-batch reproducibility. A multi-selenophene-containing PSMA, PFY-3Se, was developed based on a selenophene-fused SMA framework and a selenophene pi-spacer. Compared to its thiophene analogue PFY-0Se, PFY-3Se shows a approximate to 30 nm red-shifted absorption, increased electron mobility, and improved intermolecular interaction. In all-PSCs, PFY-3Se achieved an impressive PCE of 15.1 % with both high short-circuit current density of 23.6 mA cm(-2) and high fill factor of 0.737, and a low energy loss, which are among the best values in all-PSCs reported to date and much better than PFY-0Se (PCE=13.0 %). Notably, PFY-3Se maintains similarly good batch-to-batch properties for realizing reproducible device performance, which is the first reported and also very rare for the PSMAs. Moreover, the PFY-3Se-based all-PSCs show low dependence of PCE on device area (0.045-1.0 cm(2)) and active layer thickness (110-250 nm), indicating the great potential toward practical applications.
키워드
- 제목
- Multi-Selenophene-Containing Narrow Bandgap Polymer Acceptors for All-Polymer Solar Cells with over 15 % Efficiency and High Reproducibility
- 저자
- Fan, Qunping; Fu, Huiting; Wu, Qiang; Wu, Ziang; Lin, Francis; Zhu, Zonglong; Min, Jie; Woo, Han Young; Jen, Alex K-y
- 발행일
- 2021-07-12
- 유형
- Article
- 권
- 60
- 호
- 29
- 페이지
- 15935 ~ 15943