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A selenium-substituted core and a synergistic regioisomer-free monomethylated terminal enable methylated acceptors with high efficiency and low energy loss in binary organic solar cells
- Yang, Can;
- Liu, Tao;
- Liu, Kai-Kai;
- Yan, Lu;
- Mahmood, Asif;
- ... Woo, Han Young;
- 외 3명
WEB OF SCIENCE
1SCOPUS
1초록
Selenium substitution and methyl modification of small molecular acceptors (SMAs) are often utilized for developing efficient organic solar cells (OSCs); however, their synergistic effects on the trade-off between device parameters have rarely been investigated. Herein, a pair of A-D-A-type FR-SMAs (IT-M-gamma and BIT-M-gamma) with regioisomer-free monomethylated IC, comprising fused-ring indacenodithieno[3,2-b]thiophene and indacenodithieno[3,2-b]selenophene as their core units, were synthesized using the synergistic selenium-substituted core and regio-specific methylated terminal strategies, respectively. BIT-M-gamma showed a red-shifted absorption, more suitable energy levels, and a planar molecular conformation compared with IT-M-gamma owing to the introduction of the selenium atom. These regioisomer-free monomethylated single crystals were successfully obtained for the first time. Compared to IT-M-gamma, the BIT-M-gamma single crystal forms a novel 2D linear stacked structure via stronger J-aggregation and multiple intermolecular interactions, leading to increased electron mobility and excellent crystallinity in neat films. The PM6:BIT-M-gamma blend film exhibits favorable phase separation with a more ordered face-on orientation, tighter molecular packing, enhanced crystallinity, and high and balanced carrier mobility. Consequently, PM6:BIT-M-gamma-based binary OSCs achieve a higher PCE of 12.56% with a lower Eloss of 0.509 eV, compared to IT-M-gamma-based devices with a PCE of 11.06% with an Eloss of 0.586 eV. More excitingly, the impressive PCE with minimal Eloss represents the best results for A-D-A type FR-SMAs with methylated terminals in binary OSCs. Our work demonstrates that a synergistic strategy by combining the selenium-substituted central core with the regioisomer-free monomethylated terminal has great potential in optimizing crystal packing and further improving the PCE with minimal Eloss of binary OSCs.
키워드
- 제목
- A selenium-substituted core and a synergistic regioisomer-free monomethylated terminal enable methylated acceptors with high efficiency and low energy loss in binary organic solar cells
- 저자
- Yang, Can; Liu, Tao; Liu, Kai-Kai; Yan, Lu; Mahmood, Asif; Kang, Min Gyu; Rong, Hongchen; Woo, Han Young; Wang, Jin-Liang
- 발행일
- 2026-03-16
- 유형
- Article; Early Access
- 권
- 14
- 호
- 19
- 페이지
- 8066 ~ 8076