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通过固体添加剂介导的聚集控制同时提高非富勒烯有机太阳能电池的效率和运行稳定性。

Simultaneously Enhanced Efficiency and Operational Stability of Nonfullerene Organic Solar Cells via Solid-Additive-Mediated Aggregation Control.

作者信息

Zhang Xue, Cai Jinlong, Guo Chuanhang, Li Donghui, Du Baocai, Zhuang Yuan, Cheng Shili, Wang Liang, Liu Dan, Wang Tao

机构信息

School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070, China.

出版信息

Small. 2021 Sep;17(35):e2102558. doi: 10.1002/smll.202102558. Epub 2021 Jul 22.

Abstract

The additive strategy is widely used in optimizing the morphology of organic solar cells (OSCs). The majority of additives are liquid with high boiling points, which will be trapped within device and consequently deteriorate performance during operation. In this work, solid but volatile additives 2-(4-fluorobenzylidene)-1H-indene-1,3(2H)-dione (INB-F) and 2-(4-chlorobenzylidene)-1H-indene-1,3(2H)-dione (INB-Cl) are designed to replace the common 1,8-diiodooctane (DIO) in nonfullerene OSCs. These additives present during solution casting but evaporate after moderate heating. Molecular dynamics simulations show that they can reduce the adsorption energy to improve π-π stacking among nonfullerene acceptor (NFA) molecules, an effect that enhances light absorption and electron mobility. Both INB-F and INB-Cl enhance efficiency, with INB-F achieving a maximum efficiency of 16.7% from 15.1% of the reference PBDB-T-2F (PM6):BTP-BO-4F (Y6-BO) cell, and outperforming DIO. Remarkably, they can simultaneously enhance the operational stability, with the INB-F-treated OSC maintaining over 60% of the initial efficiency after 1000 h operation, demonstrating a T lifetime of 523 h, which is a significant improvement over T values of 66.2 h for the reference and 6.6 h for DIO-treated OSC. The simultaneously enhanced efficiency and operational lifetime are also effective in PM6:BTP-BO-4Cl (Y7-BO) OSCs, demonstrating a universal strategy to improve the performance of OSCs.

摘要

添加剂策略在优化有机太阳能电池(OSC)的形态方面被广泛应用。大多数添加剂是高沸点液体,会被困在器件中,从而在运行过程中使性能恶化。在这项工作中,设计了固体但易挥发的添加剂2-(4-氟亚苄基)-1H-茚-1,3(2H)-二酮(INB-F)和2-(4-氯亚苄基)-1H-茚-1,3(2H)-二酮(INB-Cl),以取代非富勒烯OSC中常用的1,8-二碘辛烷(DIO)。这些添加剂在溶液浇铸过程中存在,但在适度加热后会蒸发。分子动力学模拟表明,它们可以降低吸附能,以改善非富勒烯受体(NFA)分子之间的π-π堆积,这种效应增强了光吸收和电子迁移率。INB-F和INB-Cl都提高了效率,INB-F使参考的PBDB-T-2F(PM6):BTP-BO-4F(Y6-BO)电池的效率从15.1%提高到了16.7%的最大值,并且性能优于DIO。值得注意的是,它们可以同时提高运行稳定性,经INB-F处理的OSC在运行1000小时后仍保持初始效率的60%以上,显示出523小时的T寿命,这比参考电池的66.2小时和经DIO处理的OSC的6.6小时的T值有显著提高。效率和运行寿命的同时提高在PM6:BTP-BO-4Cl(Y7-BO)OSC中也有效,证明了一种提高OSC性能的通用策略。

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