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多芳族框架中的笼状大分子有机染料及其光谱特性。

Caged bulky organic dyes in a polyaromatic framework and their spectroscopic peculiarities.

作者信息

Ueda Mayuko, Kishida Natsuki, Catti Lorenzo, Yoshizawa Michito

机构信息

Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology 4259 Nagatsuta, Midori-ku Yokohama 226-8503 Japan

出版信息

Chem Sci. 2022 Jul 5;13(29):8642-8648. doi: 10.1039/d2sc02308c. eCollection 2022 Jul 29.

Abstract

Host-guest structures and properties have been widely studied using relatively small dyes (<1 nm) without bulky groups, due to their smooth incorporation, efficient host-guest interactions, and high analytical accessibility. In this report, on the other hand, three types of sterically demanding organic dyes trapped by a polyaromatic cage were investigated by spectroscopic analyses on the basis of supramolecular interactions. Coumarins with two bulky substituents are bound by the cage in aqueous solution. The resultant caged dyes show unusual emission enhancement, depending on the difference of a single heteroatom in their substituents. The color of perylene bisimides with two bulky substituents is remarkably changed from yellow to red upon caging. This peculiarity stems from the twist of the substituents in the cage, revealed by the combination of absorption and theoretical studies. Furthermore, tetrasubstituted, bulky porphyrins are caught by the cage in aqueous solution. The caged bulky dyes also display altered color and absorption properties, which remain intact even under acidic conditions. In contrast to typical covalent functionalization and previous host-guest studies toward small and non-bulky dyes, the unusual, non-covalent spectroscopic modulation of the large and bulky dyes can be accomplished for the first time by the present cage, featuring a prolate polyaromatic framework with four openings.

摘要

由于其易于掺入、高效的主客体相互作用以及高分析可及性,主客体结构和性质已被广泛研究,所使用的染料相对较小(<1 nm)且无庞大基团。另一方面,在本报告中,基于超分子相互作用,通过光谱分析研究了被多芳族笼捕获的三种位阻较大的有机染料。带有两个庞大取代基的香豆素在水溶液中被笼所束缚。所得的笼状染料表现出异常的发射增强,这取决于其取代基中单个杂原子的差异。带有两个庞大取代基的苝二酰亚胺在被笼合后颜色从黄色显著变为红色。这种特殊性源于笼中取代基的扭曲,这是通过吸收和理论研究相结合揭示的。此外,四取代的庞大卟啉在水溶液中被笼捕获。笼状的庞大染料也表现出颜色和吸收性质的改变,即使在酸性条件下也保持不变。与典型的共价功能化以及先前针对小的和无庞大基团染料的主客体研究不同,本笼首次实现了对大的和庞大染料的异常非共价光谱调制(该笼具有一个带有四个开口的长形多芳族骨架)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03e4/9337736/efc38c5f5454/d2sc02308c-f1.jpg

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