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Structure-Property Relationship Study of Substitution Effects on isoindigo-Based Model Compounds as Electron Donors in Organic Solar Cells

机译:有机太阳能电池中基于靛蓝的模型化合物作为电子给体的取代效应的结构-性质关系研究

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摘要

We designed and synthesized a series of isoindigo-based derivatives to investigate how chemical structure modification at both the 6,6'- and S,5'-positions of the core with electron-rich and electron-poor moieties affect photophysical and redox properties as well as their solid-state organization. Our studies reveal that 6,6'-substitution on the isoindigo core results in a stronger intramolecular charge transfer band due to strong electronic coupling between the 6,6'-substituent and the core, whereas 5,5'-substitution induces a weaker CT band that is more sensitive to the electronic nature of the substituents. In the solid state, 6,6'-derivatives generally form J-aggregates, whereas 5,5'-derivatives form H-aggregates. With only two branched ethylhexyl side chains, the 6,6'-derivatives form organized lamellar structures in the solid state. The incorporation of electron-rich benzothiophene, BT, substituents further enhances ordering, likely because of strong intermolecular donor-acceptor interactions between the BT substituent and the electron-poor isoindigo core on neighboring compounds. Collectively, the enhanced photophysical properties and solid-state organization of the 6,6'-benzothiophene substituted isoindigo derivative compared to the other isoindigo derivatives examined in this study resulted in solar cells with higher power conversion efficiencies when blended with a fullerene derivative.
机译:我们设计并合成了一系列基于异靛蓝的衍生物,以研究具有富电子和贫电子部分的核心的6,6'-和S,5'-位置的化学结构修饰如何影响光物理和氧化还原特性,如以及他们的固态组织。我们的研究表明,由于6,6'取代基与核心之间的强电子偶联,异靛蓝核心上的6,6'取代导致更强的分子内电荷转移带,而5,5'取代则诱导了较弱的CT对取代基的电子性质更敏感的谱带。在固态下,6,6'-衍生物通常形成J-聚集体,而5,5'-衍生物则形成H-聚集体。仅具有两个支链乙基己基侧链的6,6'-衍生物以固态形成有组织的层状结构。富含电子的苯并噻吩BT取代基的加入进一步增强了有序性,这可能是由于BT取代基与相邻化合物上电子贫乏的异靛蓝核之间强烈的分子间供体-受体相互作用。总体而言,与本研究中研究的其他异靛蓝衍生物相比,增强的6,6'-苯并噻吩取代的异靛蓝衍生物的光物理性质和固态组织得到增强,与富勒烯衍生物混合后,太阳能电池具有更高的功率转换效率。

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