Heintges Gaël H L, Bolduc Andréanne, Meskers Stefan C J, Janssen René A J
Molecular Materials and Nanosystems & Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
Institute for Materials Research (IMO-IMOMEC), Design & Synthesis of Organic Semiconductors (DSOS), Hasselt University, Agoralaan, 3590 Diepenbeek, Belgium.
J Phys Chem C Nanomater Interfaces. 2020 Feb 13;124(6):3503-3516. doi: 10.1021/acs.jpcc.9b11562. Epub 2020 Jan 23.
By analyzing the optical band gap and energy levels of seven different regioregular terpolymers in which two different electron-rich donor moieties are alternating with a common electron-deficient acceptor unit along the backbone, we establish a direct correlation with the properties of the corresponding binary copolymers in which one donor and one acceptor are combined. For this study, we use diketopyrrolopyrrole as the common acceptor and different π-conjugated aromatic oligomers as donors. We find that the optical band gap and frontier orbital energies of the terpolymers are the arithmetic average of those of the parent copolymers with remarkable accuracy. The same relationship is also found for the open-circuit voltage of the bulk heterojunction solar cells made with the ter- and copolymers in combination with [6,6]-phenyl-C-butyric acid methyl ester. Comparison of these findings with data in the literature suggests that this is a universal rule that can be used as a tool when designing new π-conjugated polymers. The experimental results are supported by a semiempirical quantum chemical model that accurately describes the energy levels of the terpolymers after parametrization on the energy levels of the copolymers and also provides a theoretical explanation for the observed arithmetic relations.
通过分析七种不同的区域规整三元共聚物的光学带隙和能级,其中两种不同的富电子供体部分沿着主链与一个共同的缺电子受体单元交替排列,我们建立了与相应二元共聚物(其中一个供体和一个受体结合)性质的直接关联。在这项研究中,我们使用二酮吡咯并吡咯作为共同受体,不同的π共轭芳族低聚物作为供体。我们发现三元共聚物的光学带隙和前沿轨道能量非常精确地是母体共聚物的算术平均值。在用三元共聚物和二元共聚物与[6,6]-苯基-C-丁酸甲酯组合制成的本体异质结太阳能电池的开路电压方面也发现了相同的关系。将这些发现与文献中的数据进行比较表明,这是一个通用规则,可作为设计新型π共轭聚合物时的一个工具。实验结果得到了一个半经验量子化学模型的支持,该模型在根据共聚物的能级进行参数化后准确描述了三元共聚物的能级,并且还为观察到的算术关系提供了理论解释。