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溶剂模板化的卟二酰亚胺大环折叠成具有溶剂敏感性光学特征的螺旋双链绳。

Solvent-Templated Folding of Perylene Bisimide Macrocycles into Coiled Double-String Ropes with Solvent-Sensitive Optical Signatures.

机构信息

Department of Chemistry, Argonne-Northwestern Solar Energy Research (ANSER) Center, Northwestern University , 2145 Sheridan Road, Evanston, Illinois 60208-3113, United States.

出版信息

J Am Chem Soc. 2017 Feb 8;139(5):2014-2021. doi: 10.1021/jacs.6b11973. Epub 2017 Jan 27.

Abstract

A series of semirigid perylene bisimide (PBI) macrocycles with varied ring size containing two to nine PBI chromophores were synthesized in a one-pot reaction and their photophysical properties characterized by fluorescence, steady-state, and transient absorption spectroscopy as well as femtosecond stimulated Raman spectroscopy. These macrocycles show solvent-dependent conformational equilibria and excited-state properties. In dichloromethane, the macrocycles prevail in wide-stretched conformations and upon photoexcitation exhibit symmetry-breaking charge separation followed by charge recombination to triplet states, which photosensitize singlet oxygen formation. In contrast, in aromatic solvents folding of the macrocycles with a distinct odd-even effect regarding the number of PBI chromophore units was observed in steady-state and time-resolved absorption and fluorescence spectroscopy as well as femtosecond stimulated Raman spectroscopy. These distinctive optical properties are attributable to the folding of the even-membered macrocycles into exciton-vibrational coupled dimer pairs in aromatic solvents. Studies in a variety of aromatic solvents indicate that these solvents embed between PBI dimer pairs and accordingly template the folding of even-membered PBI macrocycles into ropelike folded conformations that give rise to solvent-specific exciton-vibrational couplings in UV-vis absorption spectra. As a consequence of the embedding of solvent molecules in the coiled double-string rope architecture, highly solvent specific intensity ratios are observed for the two lowest-energy exciton-vibrational bands, enabling assignment of the respective solvent simply based on the absorption spectra measured for the tetramer macrocycle.

摘要

一系列具有不同环大小的半刚性苝二酰亚胺(PBI)大环,其中包含两个到九个 PBI 发色团,通过一锅反应合成,并通过荧光、稳态和瞬态吸收光谱以及飞秒受激拉曼光谱来表征其光物理性质。这些大环显示出溶剂依赖性的构象平衡和激发态性质。在二氯甲烷中,大环主要呈现宽拉伸构象,在光激发下表现出对称性破缺的电荷分离,随后通过电荷复合到三重态,这会敏化单线态氧的形成。相比之下,在芳香溶剂中,大环的折叠伴随着奇数-偶数效应,这与 PBI 发色团单元的数量有关,这可以在稳态和时间分辨吸收和荧光光谱以及飞秒受激拉曼光谱中观察到。这些独特的光学性质归因于偶数大环在芳香溶剂中折叠成激子-振动耦合的二聚体对。在各种芳香溶剂中的研究表明,这些溶剂嵌入在 PBI 二聚体对之间,因此模板化了偶数大环折叠成绳状折叠构象,从而在 UV-vis 吸收光谱中产生溶剂特异性的激子-振动耦合。由于溶剂分子嵌入在螺旋双链绳状结构中,对于两个最低能量的激子-振动带观察到高度溶剂特异性的强度比,这使得可以根据为四聚体大环测量的吸收光谱简单地分配相应的溶剂。

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