混溶性
三元运算
接受者
热稳定性
光伏系统
材料科学
结晶
光伏
有机太阳能电池
电子受体
化学工程
化学
光化学
聚合物
电气工程
计算机科学
复合材料
程序设计语言
工程类
物理
凝聚态物理
作者
Baobing Fan,Wei Gao,Ying Wang,Wenkai Zhong,Francis Lin,Wen J. Li,Fei Huang,K. M. Yu,Alex K.‐Y. Jen
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2021-09-13
卷期号:6 (10): 3522-3529
被引量:36
标识
DOI:10.1021/acsenergylett.1c01576
摘要
Employing a ternary blend as absorber is an ingenious tactic to achieve broad spectral coverage in single-junction organic photovoltaics. The incorporation of a second acceptor with relatively lower electron affinity (EA) is important for attaining increased open-circuit voltage (VOC) of ternary devices. However, the common way in achieving a lower EA through tailoring the skeletons may affect the miscibility between acceptors, which inherently restrict the dependence of VOC on compositions. Herein, we developed a low-EA acceptor through side-chain engineering to ensure similarity with another ultranarrow-bandgap acceptor, enabling a good miscibility between the two species and formation of a vitrified solid solution over a large range of compositions. As a result, continuously increased VOC is realized, while the other parameters are less composition-sensitive. Besides, the vitrification facilitates intimate intermolecular interactions in ternary blends, suppressing thermally induced crystallization. Ultimately, increased photovoltaic efficiency and thermal stability are simultaneously achieved for the resulting ternary devices.
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