材料科学
堆积
能量转换效率
有机太阳能电池
二聚体
结晶度
共轭体系
接受者
离域电子
有机化学
光电子学
聚合物
化学
物理
复合材料
凝聚态物理
作者
Meihong Ou,Yongwen Lang,Hanjian Lai,Zihao Deng,Xiangyu Shen,Li Wang,Heng Li,Nan Zheng,Feng He
标识
DOI:10.1002/adfm.202419453
摘要
Abstract End group modification is a crucial strategy for fine‐tuning non‐fullerene acceptors in organic solar cells (OSCs). Extending the conjugation of end groups enhances electron delocalization, promotes tighter intermolecular stacking, and improves crystallinity and spectral absorption. In this study, a series of isomeric dimer acceptors with conjugation‐extended end groups is synthesized to investigate how the position of end group extension affects the performance of dimers. Using a one‐pot Still coupling method, three dimers with inner end group extensions are efficiently synthesized, significantly reducing synthesis time and cost. Among these, the device based on dBSeIC‐ɛNIC exhibited a higher power conversion efficiency (PCE) compared to the dBSeIC‐γIC device, which lacks conjugated extension. Building on this, the connection site of the inner end group is optimized and extended the conjugation from the outer end group. As a result, the Q‐PHJ device using dBSeNIC‐γIC/PBQx‐H‐TF achieved a maximum PCE of 17.68%, largely due to a notable increase in fill factor (FF). The study reveals the critical impact of end group conjugation extension on dimer acceptor performance and underscores the importance of selecting the optimal connection site for enhancing OSC efficiency.
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