Prolonged exciton lifetime via conjugation-length engineering in M-series acceptors for 19.39% efficiency polymer solar cells
作者:Wenzhong Shen, Xiaoying Xiong, Dongdong Cai, Li Liu, Junlu Lin, Shuo Wan, Jin-Yun Wang, Yi Li, Yunlong Ma, Huiting Fu, Chunfeng Zhang, Qingdong Zheng · 发表于:National Science Review · 年份:2025 · DOI:10.1093/nsr/nwaf537 · 被引用次数:9 · 研究领域:Organic Electronics and Photovoltaics、Conducting polymers and applications、Perovskite Materials and Applications
ABSTRACT Developing non-fullerene acceptors (NFAs) that combine high device efficiency with superior stability remains a significant challenge. Based on M-series acceptors featuring an acceptor-donor-acceptor (A-D-A)-type framework, we report two dimerized NFAs (DM-8F and DM-8Cl) containing different halogen atoms in their terminal groups. Compared to the small-molecule acceptor M68, both dimerized acceptors exhibit increased glass transition temperatures and enlarged dielectric constants. The choice of halogen atoms in the terminal groups significantly affects their π–π-packing distances, exciton diffusion lengths, and ultimately, photovoltaic performance. Owing to enhanced charge transport, reduced exciton binding energy, and extended exciton diffusion length, DM-8F achieves an efficiency of 19.39% (certified at 19.20%) in small-area polymer solar cells (PSCs) and 15.72% in minimodules with an effective area of 11.09 cm2. These efficiencies are the highest reported to date among all A-D-A-type NFAs. Moreover, DM-8F–based devices exhibit significantly improved thermal and photostability compared to those based on M68.