三元运算
材料科学
有机太阳能电池
接受者
激子
光致发光
能量转换效率
光电子学
量子效率
扩散
量子产额
吸收(声学)
聚合物
光学
荧光
热力学
凝聚态物理
物理
计算机科学
复合材料
程序设计语言
作者
Rui Sun,Yao Wu,Xinrong Yang,Yuan Gao,Zeng Chen,Kai Li,Jiawei Qiao,Tao Wang,Jing Guo,Chao Liu,Xiaotao Hao,Haiming Zhu,Jie Min
标识
DOI:10.1002/adma.202110147
摘要
The ternary strategy has been widely identified as an effective approach to obtain high-efficiency organic solar cells (OSCs). However, for most ternary OSCs, the nonradiative voltage loss lies between those of the two binary devices, which limits further efficiency improvements. Herein, an asymmetric guest acceptor BTP-2F2Cl is designed and incorporated into a PM1:L8-BO host blend. Compared with the L8-BO neat film, the L8-BO:BTP-2F2Cl blend film shows higher photoluminescence quantum yield and larger exciton diffusion length. Introducing BTP-2F2Cl into the host blend extends its absorption spectrum, improves the molecular packing of host materials, and suppresses the nonradiative charge recombination of the ternary OSCs. Consequently, the power conversion efficiency is improved up to 19.17% (certified value 18.7%), which represents the highest efficiency value reported for single-junction OSCs so far. The results show that improving the exciton behaviors is a promising approach to reducing the nonradiative voltage loss and realizing high-performance OSCs.
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