Chen Hui, Qu Jianfei, Liu Longzhu, Chen Wei, He Feng
Department of Chemistry and Shenzhen Grubbs Institute , Southern University of Science and Technology , Shenzhen 518055 , China.
Materials Science Division , Argonne National Laboratory , 9700 Cass Avenue , Lemont , Illinois 60439 , United States.
J Phys Chem Lett. 2019 Mar 7;10(5):936-942. doi: 10.1021/acs.jpclett.9b00063. Epub 2019 Feb 15.
Very small amounts of 1,8-diiodooctane (DIO) are very effective at optimizing the performance of polymer solar cells (PSCs). To date, the underlying influences are not yet fully understood, especially in nonfullerene PSCs. Herein, the influence of DIO on carrier dynamics and morphology in the PBDBT2Cl:IT4F system was investigated in detail. We combined the characterization of the transient dynamics with the morphology characterization of PSC devices to explore the origin of enhanced performance. Compared to the cast device, the champion device with 0.5% DIO revealed the maximum of current density ( J) and fill factor (FF). The optimum DIO content helps to enhance carrier transport and optimize morphology, while excess DIO produces adverse effects due to the induced intense aggregation and dilated size in blend films. The results provide some hints of improved device performance upon using DIO as an additive in nonfullerene PSCs.
极少量的1,8 - 二碘辛烷(DIO)在优化聚合物太阳能电池(PSC)的性能方面非常有效。迄今为止,其潜在影响尚未完全理解,尤其是在非富勒烯PSC中。在此,详细研究了DIO对PBDBT2Cl:IT4F体系中载流子动力学和形貌的影响。我们将瞬态动力学表征与PSC器件的形貌表征相结合,以探究性能增强的起源。与铸膜器件相比,含0.5% DIO的最佳器件显示出最大电流密度(J)和填充因子(FF)。最佳的DIO含量有助于增强载流子传输并优化形貌,而过量的DIO会由于在共混膜中诱导强烈聚集和尺寸扩大而产生不利影响。这些结果为在非富勒烯PSC中使用DIO作为添加剂来提高器件性能提供了一些线索。