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香豆素二聚体弹簧——电荷转移和空间相互作用的斗争。

The Coumarin-Dimer Spring-The Struggle between Charge Transfer and Steric Interactions.

机构信息

Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224, Warsaw, Poland.

Institute of Physics, Polish Academy of Sciences, Al. Lotników 32/46, 02-668, Warsaw, Poland.

出版信息

Chemistry. 2017 Jul 6;23(38):9174-9184. doi: 10.1002/chem.201701387. Epub 2017 Jun 14.

Abstract

The synthesis of a weakly coupled, strongly polarized coumarin dimer has been achieved for the first time. The three-step strategy comprises the Skattebøl formylation followed by the Knoevenagel reaction and the formation of a tertiary amide by using a peptide-type procedure. The molecule consists of two different coumarin moieties: One is a classical donor-acceptor system and the second one possesses a weaker amide donor at the 7-position. The polarized coumarin dimer can form an electronically conjugated structure possessing an electric dipole larger than that of 7-(dimethylamino)coumarin-3-carboxylic acid. The limited flexibility of the inter-coumarin connection results in stable conformers of different electric dipole moments and complex photophysics. In the solid state, this compound has a strongly bent conformation with the two coumarin units forming an angle of around 74°. In solution, two conformers are in equilibrium. The existence of the molecule as two conformers in the ground state has been confirmed by optical studies, and further corroborated by molecular calculations. The fluorescence spectra possess a unique feature: A charge-transfer band (ca. 550 nm) is visible only in nonpolar or weakly polar solvents. Optical spectroscopy studies coupled with molecular calculations allowed us to rationalize this phenomenon: The large amplitude of intramolecular motions is responsible for the conformational isomerization as well as producing a conical intersection between the potential energy surfaces of the excited singlet state and the ground state, which opens an internal conversion channel that effectively competes with the fluorescence of the conformers.

摘要

首次成功合成了弱耦合、强极化的香豆素二聚体。该三步策略包括 Skattebøl 甲酰化反应、Knoevenagel 反应和使用肽型方法形成叔酰胺。该分子由两个不同的香豆素部分组成:一个是经典的给体-受体体系,另一个在 7 位具有较弱的酰胺供体。极化香豆素二聚体可以形成具有比 7-(二甲氨基)香豆素-3-羧酸更大电偶极矩的电子共轭结构。两个香豆素单元之间连接的有限灵活性导致了不同偶极矩的稳定构象和复杂的光物理性质。在固态下,该化合物具有强烈弯曲的构象,两个香豆素单元形成约 74°的角度。在溶液中,两种构象处于平衡状态。通过光学研究证实了该化合物在基态下存在两种构象,进一步通过分子计算得到证实。荧光光谱具有独特的特征:仅在非极性或弱极性溶剂中可见电荷转移带(约 550nm)。光学光谱研究与分子计算相结合,使我们能够合理地解释这一现象:分子内运动的大振幅负责构象异构化,并在激发单线态和基态的势能表面之间产生锥形交叉,从而打开内部转换通道,有效地与构象的荧光竞争。

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