化学
噻吩
堆积
光伏系统
接受者
苯
位阻效应
平面的
有机太阳能电池
侧链
光化学
有机化学
聚合物
计算机图形学(图像)
生态学
物理
生物
计算机科学
凝聚态物理
作者
Ni Yang,Yong Cui,Tao Zhang,Cunbin An,Zhihao Chen,Xiao Yang,Yue Yu,Yafei Wang,Xiaotao Hao,Jianhui Hou
摘要
The nonfused thiophene-benzene-thiophene (TBT) unit offers advantages in obtaining low-cost organic photovoltaic (OPV) materials due to its simple structure. However, OPV cells, including TBT-based acceptors, exhibit significantly lower energy conversion efficiencies. Here, we introduce a novel approach involving the design and synthesis of three TBT-based acceptors by substituting different position-branched side chains on the TBT unit. In comparison to TBT-10 and TBT-11, TBT-13, which exclusively incorporates α-position branched side chains with a large steric hindrance, demonstrates a more planar and stable conformation. When blended with the donor PBQx-TF, TBT-13-based blend film achieves favorable π-π stacking and aggregation characteristics, resulting in excellent charge transfer performance in the corresponding device. Due to the simultaneous enhancements in short-circuit current density and fill factor, the TBT-13-based OPV cell obtains an outstanding efficiency of 16.1%, marking the highest value for the cells based on fully nonfused acceptors. Our work provides a practical molecular design strategy for high-performance and low-cost OPV materials.
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