接受者
三元运算
有机太阳能电池
取代基
材料科学
光化学
轨道能级差
电子受体
能量转换效率
戒指(化学)
化学
有机化学
光电子学
分子
聚合物
复合材料
物理
程序设计语言
计算机科学
凝聚态物理
作者
Miao Li,Shiyu Feng,Shuaishuai Shen,Hao Huang,Wenyue Xue,Na Yu,Yuanyuan Zhou,Wei Ma,Jinsheng Song,Zheng Tang,Zhishan Bo
标识
DOI:10.1016/j.cej.2022.135384
摘要
Nonfused ring acceptors have shown great potential for future commercial applications of organic solar cells (OSCs) due to their simple structure and low synthetic costs. Herein, a novel asymmetrical nonfused ring acceptor FO-N with one branched lateral chain and one fluoro substituent at the central phenylene core was designed and introduced into PBDB-T:DO-2F binary system to fabricate high-efficiency ternary OSCs. The high-lying LUMO level of FO-N is conducive to improve Voc for ternary devices. More importantly, the introduction of FO-N as the third component can efficiently improve the compatibility of the ternary system via tuning the crystal size and optimizing the blend film morphology, which is beneficial to charge separation and reduced the non-radiative energy loss (ΔEnonrad). Finally, the ternary device achieved a low ΔEnonrad of 0.23 eV and a greatly improved PCE of 14.10% and with a Voc of 0.88 V, a Jsc of 21.48 mA/cm2 and an FF of 74.41%. These results imply that the asymmetric nonfused ring acceptor design strategy is an effective way for optimizing the photovoltaic performance of highly crystallized blend system.
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