Rasmussen Mads Georg, Jespersen Malte Frydenlund, Blacque Olivier, Mikkelsen Kurt V, Juríček Michal, Nielsen Mogens Brøndsted
Department of Chemistry University of Copenhagen Copenhagen Denmark.
Department of Chemistry University of Zurich Zurich Switzerland.
Energy Sci Eng. 2022 May;10(5):1752-1762. doi: 10.1002/ese3.1071. Epub 2022 Jan 17.
Organic photovoltaics relies on the development of stable chromophores and redox-active organic molecules with tailor-made HOMO/LUMO energies. Here, we present the synthesis and properties of novel dyads composed of boron subphthalocyanine (SubPc) and triangulene units, connected either at the peripheral position of the subphthalocyanine or at the axial boron. The connectivity has strong implications for the absorption and fluorescence properties of the dyads, as well as their redox properties. While the SubPc unit has a bowl shape, triangulene is a planar structural unit that allows dyads to dimerize in the solid state on account of π-stacking interactions as shown by X-ray crystallography of one of the dyads. The electronic properties were also studied computationally by density functional theory methods. Excellent agreement between experimental and computed data were obtained, showing that our computational method is a strong tool in the rational design of optimum molecules to ultimately obtain finely tuned molecules for device applications.
有机光伏依赖于开发具有定制的最高已占分子轨道(HOMO)/最低未占分子轨道(LUMO)能量的稳定发色团和氧化还原活性有机分子。在此,我们展示了由亚酞菁硼(SubPc)和三角烯单元组成的新型二元化合物的合成及性质,它们连接在亚酞菁的外围位置或轴向硼上。这种连接方式对二元化合物的吸收和荧光性质及其氧化还原性质有很大影响。虽然SubPc单元呈碗状,但三角烯是平面结构单元,这使得二元化合物能够因π-堆积相互作用在固态下二聚,其中一个二元化合物的X射线晶体学结果证明了这一点。还通过密度泛函理论方法对电子性质进行了计算研究。实验数据与计算数据之间取得了极好的一致性,表明我们的计算方法是合理设计最佳分子以最终获得用于器件应用的精细调谐分子的有力工具。