Linker Engineering of Dimerized Small Molecule Acceptors for Highly Efficient and Stable Organic Solar Cells

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124

초록

High power conversion efficiency (PCE) and long-term stability are important requirements for commercialization of organic solar cells (OSCs). In this study, we demonstrate efficient (PCE = 18.60%) and stable (t80% lifetime > 4000 h) OSCs by developing a series of dimerized small-molecule acceptors (DSMAs). We prepared three different DSMAs (DYT, DYV, and DYTVT) by using different linkers (i.e., thiophene, vinylene, and thiophene- vinylene- thiophene), to connect their two Y-based building blocks. We find that the crystalline properties and glass transition temperature (Tg) of DSMAs can be systematically modulated by the linker selection. A DYV-based OSC achieves the highest PCE (18.60%) among the DSMA-based OSCs owing to the appropriate backbone rigidity of DYV, leading to an optimal blend morphology and high electron mobility. Importantly, the DYV-based OSC also demonstrates excellent operational stability under 1-sun illumination, i.e., a t80% lifetime of 4005 h. © 2023 American Chemical Society.

키워드

PERFORMANCE; STABILITY; AGGREGATION
제목
Linker Engineering of Dimerized Small Molecule Acceptors for Highly Efficient and Stable Organic Solar Cells
저자
Lee, J.-W.; Sun, C.; Lee, Changyeon; Tan, Z.; Phan, T.N.; Jeon, H.; Jeong, D.; Kwon, S.-K.; Kim, Y.-H.; Kim, B.J.
DOI
10.1021/acsenergylett.2c02679
발행일
2023-02
유형
Article; Early Access
저널명
ACS Energy Letters
권
8
호
3
페이지
1344 ~ 1353