Regioisomeric Engineering of Dimerized Small-Molecule Acceptors for Efficient and Stable Organic Solar Cells
- Authors
- Jeon, Hyesu; Hong, Kwang-Pyo; Lee, Jin-Woo; Jeong, Dahyun; Phan, Tan Ngoc-Lan; Lee, Heung-Goo; Park, Jin Su; Wang, Cheng; Xuyao, Song; Kim, Yun-Hi; Kim, Bumjoon J.
- Issue Date
- Oct-2023
- Publisher
- American Chemical Society
- Citation
- Chemistry of Materials, v.35, no.21, pp 9276 - 9286
- Pages
- 11
- Indexed
- SCIE
SCOPUS
- Journal Title
- Chemistry of Materials
- Volume
- 35
- Number
- 21
- Start Page
- 9276
- End Page
- 9286
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/68598
- DOI
- 10.1021/acs.chemmater.3c02055
- ISSN
- 0897-4756
1520-5002
- Abstract
- The simultaneous achievement of high power conversion efficiency (PCE) and long-term stability is essential for the commercialization of organic solar cells (OSCs). However, efficient OSCs based on small-molecule acceptors (SMAs) typically show poor long-term stability, mainly because of morphological deterioration caused by the fast diffusion of SMA molecules during the thermal- and photostresses. In this study, two dimerized SMAs (DSMAs) comprising selenophene spacers with different regiopositions, DYSe-I and DYSe-O, are developed to achieve efficient and thermally stable OSCs. The different regiopositions in DSMAs have a substantial effect on various molecular properties. DYSe-I possesses a more planar backbone conformation and more continuously connected conjugation than DYSe-O. Consequently, DYSe-I exhibits a relatively higher crystallinity, electron mobility, and glass transition temperature. These favorable features of DYSe-I lead to a higher PCE (16.8%) and thermal stability (t80% lifetime = 514 h) in the resulting OSCs, surpassing those of the DYSe-O-based devices (PCE = 14.0% and t80% lifetime = 115 h). This study highlights the importance of tuning the linker structure and its regioposition in DSMAs to realize the production of high-performance and thermally stable OSCs. © 2023 American Chemical Society.
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Collections - 공학계열 > Dept.of Materials Engineering and Convergence Technology > Journal Articles
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