Ding Yafei, Xiong Shilong, Li Mingpeng, Pu Mingrui, Zhu Yiwu, Lai Xue, Wang Yunpeng, Qiu Dongsheng, Lai Hanjian, He Feng
Shenzhen Grubbs Institute and Department of Chemistry, Southern University of Science and Technology, Shenzhen, 518055, China.
Guangdong Provincial Key Laboratory of Catalysis, Southern University of Science and Technology, Shenzhen, 518055, China.
Small. 2024 May;20(21):e2309169. doi: 10.1002/smll.202309169. Epub 2023 Dec 10.
The conjugate expansion of nonfullerene acceptors is considered to be a promising approach for improving organic photovoltaic performance because of its function in tuning morphological structure and molecular stacking behavior. In this work, two nonfullerene acceptors are designed and synthesized using a 2D π-conjugate expansion strategy, thus enabling the construction of highly-efficient organic solar cells (OSCs). Compared with YB2B (incorporating dibromophenanthrene on the quinoxaline-fused core), YB2T (incorporating dibromobenzodithiophene on the quinoxaline-fused core) has red-shifted spectral absorption and better charge transport properties. Moreover, the more orderly and tightly intermolecular stacking of YB2T provides the possibility of forming a more suitable phase separation morphology in blend films. Through characterization and analysis, the YB2T-based blend film is found to have higher exciton dissociation efficiency and less charge recombination. Consequently, the power conversion efficiency (PCE) of 17.05% is achieved in YB2T-based binary OSCs, while YB2B-based devices only reached 10.94%. This study demonstrates the significance of the aromatic-ring substitution strategy for regulating the electronic structure and aggregation behavior of 2D nonfullerene acceptors, facilitating the development of devices with superior photovoltaic performance.
由于非富勒烯受体的共轭扩展在调节形态结构和分子堆积行为方面的作用,其被认为是提高有机光伏性能的一种有前景的方法。在这项工作中,使用二维π共轭扩展策略设计并合成了两种非富勒烯受体,从而能够构建高效有机太阳能电池(OSC)。与YB2B(在喹喔啉稠合核上引入二溴菲)相比,YB2T(在喹喔啉稠合核上引入二溴苯并二噻吩)具有红移的光谱吸收和更好的电荷传输性能。此外,YB2T更有序且紧密的分子间堆积为在共混膜中形成更合适的相分离形态提供了可能性。通过表征和分析,发现基于YB2T的共混膜具有更高的激子解离效率和更少的电荷复合。因此,基于YB2T的二元OSC实现了17.05%的功率转换效率(PCE),而基于YB2B的器件仅达到10.94%。这项研究证明了芳环取代策略在调节二维非富勒烯受体的电子结构和聚集行为方面的重要性,有助于开发具有优异光伏性能的器件。