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具有较高LUMO能级的新型中带隙非稠环客体受体实现了高性能三元有机太阳能电池。

New Medium-Bandgap Nonfused Ring Guest Acceptor with a Higher-Lying LUMO Level Enables High-Performance Ternary Organic Solar Cells.

作者信息

Zhou Zhongxin, Xu Yongchuan, Yang Jun, Zhang Shiyue, Jin Shujing, Li Hongxiang, Zhu WeiGuo, Liu Yu

机构信息

School of Materials Science and Engineering, Jiangsu Engineering Laboratory of Light-Electricity-Heat Energy-Converting Materials and Applications, Changzhou University, Changzhou 213164, China.

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, China.

出版信息

ACS Appl Mater Interfaces. 2023 Sep 13;15(36):42792-42801. doi: 10.1021/acsami.3c06529. Epub 2023 Aug 31.

Abstract

Adding another constituent into a binary system, known as a ternary strategy, represents a simple and effective approach to boosting the power conversion efficiency (PCE) of organic solar cells (OSCs). Herein, we have prepared a new nonfused ring small-molecule acceptor with a medium bandgap, named DFTQA-2FIC, which possesses a high-lying lowest unoccupied molecular orbital energy level and a strong intramolecular charge-transfer effect. We elaborately utilized it as a third component in a typical PM6:Y6 blend to obtain high-performance ternary OSCs. The resulting ternary blend film exhibited superior and balanced hole/electron mobility, enhanced favorable aggregation morphology, and reduced charge carrier recombination. Consequently, an optimized ternary OSC presented a distinctly increased PCE of 17.29%, accompanied by synchronous enhancements in crucial parameters, representing a 7.46% improvement over the binary OSC based on PM6:Y6 with a PCE of 16.09%. This study highlights that incorporating DFTQA-2FIC as a third component in a binary system is suitable for optimizing photovoltaic performance.

摘要

在二元体系中添加另一种成分,即三元策略,是提高有机太阳能电池(OSC)功率转换效率(PCE)的一种简单有效的方法。在此,我们制备了一种具有中等带隙的新型非稠环小分子受体,命名为DFTQA-2FIC,它具有较高的最低未占据分子轨道能级和较强的分子内电荷转移效应。我们精心将其用作典型的PM6:Y6共混物中的第三组分,以获得高性能的三元有机太阳能电池。所得的三元共混膜表现出优异且平衡的空穴/电子迁移率、增强的有利聚集形态以及减少的电荷载流子复合。因此,优化后的三元有机太阳能电池的PCE显著提高至17.29%,同时关键参数也同步增强,相较于基于PM6:Y6且PCE为16.09%的二元有机太阳能电池提高了7.46%。这项研究突出了在二元体系中引入DFTQA-2FIC作为第三组分适用于优化光伏性能。

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