Yang Shuncheng, Chen Zhenyu, Zhu Jintao, Yang Daobin, Wang Hongqian, Ding Pengfei, Wu Jie, Yan Pengyu, Xie Lin, Chen Fei, Wang Yuming, Zhang Jianqi, Ge Ziyi
School of Materials Science and Chemical Engineering, Ningbo University, Ningbo, 315211, China.
Zhejiang Engineering Research Center for Energy Optoelectronic Materials and Devices, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, China.
Adv Mater. 2024 Jun;36(26):e2401789. doi: 10.1002/adma.202401789. Epub 2024 Apr 12.
The ternary strategy, in which one guest component is introduced into one host binary system, is considered to be one of the most effective ways to realize high-efficiency organic solar cells (OSCs). To date, there is no efficient method to predict the effectiveness of guest components in ternary OSCs. Herein, three guest compositions (i.e., ANF-1, ANF-2 and ANF-3) with different electrostatic potential (ESP) are designed and synthesized by modulating the electron-withdrawing ability of the terminal groups through density functional theory simulations. The effects of the introduction of guest component into the host system (D18:N3) on the photovoltaic properties are investigated. The theoretical and experimental studies provide a key rule for guest acceptor in ternary OSCs to improve the open-circuit voltage, that is, the larger ESP difference between the guest and host acceptor, the stronger the intermolecular interactions and the higher the miscibility, which improves the luminescent efficiency of the blend film and the electroluminescence quantum yield (EQE) of the device by reducing the aggregation-caused-quenching, thereby effectively decreasing the non-radiative voltage loss of ternary OSCs. This work will greatly contribute to the development of highly efficient guest components, thereby promoting the rapid breakthrough of the 20% efficiency bottleneck for single-junction OSCs.
三元策略,即将一种客体组分引入一种主体二元体系,被认为是实现高效有机太阳能电池(OSC)的最有效方法之一。迄今为止,尚无有效的方法来预测三元OSC中客体组分的有效性。在此,通过密度泛函理论模拟调节端基的吸电子能力,设计并合成了三种具有不同静电势(ESP)的客体组合物(即ANF-1、ANF-2和ANF-3)。研究了将客体组分引入主体体系(D18:N3)对光伏性能的影响。理论和实验研究为三元OSC中的客体受体提供了一个提高开路电压的关键规则,即客体与主体受体之间的ESP差异越大,分子间相互作用越强,混溶性越高,通过减少聚集猝灭提高了共混膜的发光效率和器件的电致发光量子产率(EQE),从而有效降低了三元OSC的非辐射电压损失。这项工作将极大地促进高效客体组分的开发,从而推动单结OSC 20%效率瓶颈的快速突破。