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Rational Asymmetric Acceptor Engineering via Unidirectional Terminal π-Extension and Optimizing Alkyl Branching Sites Affords a Binary Photovoltaic Efficiency of 20.7% by Suppressed Nonradiative Energy Loss
- Zhang, Heng;
- Li, Yaokai;
- Sun, Kangbo;
- Fu, Jiehao;
- Liu, Feng- Ke;
- ... Woo, Han Young;
- 외 12명
WEB OF SCIENCE
3SCOPUS
1초록
Ingenious molecular engineering of small-molecule acceptors (SMAs) with low nonradiative energy loss (Delta E-3) and enhanced exciton diffusion length (L-D) to overcome the efficiency bottleneck of binary organic solar cells (OSCs) remains a critical challenge. Herein, a series of symmetric SMAs (TC1-F to TC4-F) with progressively outward-shifted branching sites and asymmetric/symmetric counterparts (A-TC3-F and TC3-NF) incorporating unidirectional/bidirectional naphthyl-based terminals, are synthesized for efficient binary OSCs. The optimal 3rd carbon branching site induces a distinct triclinic crystallographic system with closer pi-pi stacking. Unidirectional naphthyl terminal-based single-crystal creates an unprecedented 2D lamellar network/3D interpenetrated packing that provides multidimensional charge-transport pathways, which enabled an improved L-D and electron mobility in A-TC3-F neat film. The A-TC3-F-based blends optimize film formation kinetics and exhibit superior ordered molecular stacking morphology, yielding faster charge transport. Consequently, the optimized A-TC3-F-based binary OSCs achieve a champion PCE of 20.70% and an ultralow Delta E 3 of 0.191 eV, setting a new benchmark for binary OSCs with asymmetric terminal-based SMAs. Our systematic work highlights an innovative pathway for precisely tailoring the side-chain branching position and a unidirectional terminal pi-extension strategy to optimize molecular packing, mitigate trade-offs of device parameters, and boost benchmark PCE and minimal Delta E 3 of binary OSCs with asymmetric terminal-based SMAs.
키워드
- 제목
- Rational Asymmetric Acceptor Engineering via Unidirectional Terminal π-Extension and Optimizing Alkyl Branching Sites Affords a Binary Photovoltaic Efficiency of 20.7% by Suppressed Nonradiative Energy Loss
- 저자
- Zhang, Heng; Li, Yaokai; Sun, Kangbo; Fu, Jiehao; Liu, Feng- Ke; Zhi, Hong- Fu; Li, Er- Long; Zhang, Zhuang; Ai, Jingxuan; Kang, Min Gyu; Woo, Han Young; Wang, Yufei; Song, Yin; An, Qiaoshi; Zhang, Guangye; Chen, Hongzheng; Li, Gang; Wang, Jin- Liang
- 발행일
- 2026-07
- 유형
- Article
- 권
- 38
- 호
- 40