Greco Jordan A, Rossi Alison, Birge Robert R, Brückner Christian
Department of Chemistry, University of Connecticut, Storrs, CT.
Photochem Photobiol. 2014 Mar-Apr;90(2):402-14. doi: 10.1111/php.12203. Epub 2013 Dec 5.
The unique optical properties of free-base meso-tris(5-methylthien-2-yl)corrole were compared to those of the widely investigated meso-triphenyl-substituted analogue. A combination of spectroscopic and computational experiments was undertaken to elucidate the relationship between structural features of the neutral, mono-anionic and mono-cationic forms of the corroles and their corresponding optical properties. A general bathochromic shift was measured for the thienyl-substituted corrole. The experimental spectra are supported by excited state calculations. A systematic series of ground state minimizations were performed to determine energy minima for the flexible and solvent-sensitive molecules. Trithienylcorrole was found to have a more nonplanar macrocycle in conjunction with a high degree of π-overlap with the meso-substituents. Both structural features contribute to their bathochromically shifted optical spectra. The configurational character of the thienyl-substituted corrole is shown to have a larger degree of molecular orbital mixing and doubly excited character, which suggest a more complex electronic structure that does not fully adhere to the Gouterman four-orbital model. The reactivity of the thienyl groups, particularly with respect to their ability to be (electro)-polymerized, combined with the tight coupling of the meso-thienyl groups with the corrole chromophore elucidated in this work, recommends the meso-thienylcorroles as building blocks in, for instance, organic semiconductor devices.
将游离碱中-三(5-甲基噻吩-2-基)卟啉的独特光学性质与广泛研究的中-三苯基取代类似物的光学性质进行了比较。开展了光谱和计算实验相结合的研究,以阐明卟啉的中性、单阴离子和单阳离子形式的结构特征与其相应光学性质之间的关系。对噻吩基取代的卟啉测量到了普遍的红移现象。实验光谱得到了激发态计算的支持。进行了一系列系统的基态最小化计算,以确定这些柔性且对溶剂敏感的分子的能量最小值。发现三噻吩基卟啉具有更非平面的大环结构,并且与中位取代基有高度的π重叠。这两个结构特征都导致了它们光谱的红移。噻吩基取代的卟啉的构型特征显示出更大程度的分子轨道混合和双激发特征,这表明其电子结构更为复杂,并不完全符合古特曼四轨道模型。噻吩基的反应活性,特别是其(电)聚合能力,再加上本工作中阐明的中位噻吩基与卟啉发色团的紧密耦合,使得中位噻吩基卟啉有望作为例如有机半导体器件的构建单元。