材料科学
溶解度
小分子
分子
有机太阳能电池
烷氧基
烷基
太阳能电池
替代(逻辑)
组合化学
有机化学
光电子学
化学
计算机科学
复合材料
聚合物
生物化学
程序设计语言
作者
Yuzhong Chen,Fujin Bai,Zhengxing Peng,Lei Zhu,Jianquan Zhang,Xinhui Zou,Yunpeng Qin,Ha Kyung Kim,Jun Yuan,Lik‐Kuen Ma,Jie Zhang,Han Yu,Philip C. Y. Chow,Fei Huang,Yingping Zou,Harald Ade,Feng Liu,He Yan
标识
DOI:10.1002/aenm.202003141
摘要
Abstract In this paper, a strategy of asymmetric alkyl and alkoxy substitution is applied to state‐of‐the‐art Y‐series nonfullerene acceptors (NFAs), and it achieves great performance in organic solar cell (OSC) devices. Since alkoxy groups can have a significant influence on the material properties of NFAs, alkoxy substitution is applied to the Y6 molecule in a symmetric manner. The resulting molecule (named Y6‐2O), despite showing improved open‐circuit voltage ( V oc ), yields extremely poor performance due to low solubility and excessive aggregation properties, a change that is due to the conformational locking effect of alkoxy groups. In contrast, asymmetric alkyl and alkoxy substitution on Y6, yields a molecule named Y6‐1O that can maintain the positive effect of V oc improvement and obtain reasonably good solubility. The resulting molecule Y6‐1O enables highly efficient nonfullerene OSCs with 17.6% efficiency and the asymmetric side‐chain strategy has the potential to be applied to other NFA‐material systems to further improve their performance.
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