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香豆素 7 和香豆素 30 在水中的自组装探索:β-环糊精作为调节剂的作用。

Exploration of Self-Aggregation of Coumarin 7 and Coumarin 30 in Water: Role of β-Cyclodextrin as a Modulator.

机构信息

Department of Chemistry, Jadavpur University, Kolkata 700 032, India.

出版信息

J Phys Chem B. 2021 Dec 16;125(49):13482-13493. doi: 10.1021/acs.jpcb.1c07287. Epub 2021 Dec 4.

Abstract

Steady-state and time-resolved spectroscopic studies demonstrate that two members of the coumarin class of dyes, coumarin 7 (C7) and coumarin 30 (C30), undergo self-aggregation in water. The development of hypsochromically shifted new absorption bands in addition to the existing monomer bands with an increase in concentration of the dyes in an aqueous medium suggests that the aggregates are of H-type. An absorption-based kinetic study reveals that the rate of aggregation of C30 is an order of magnitude faster than that of C7. Second-order rate kinetics, as obtained from the half-life () data, implies that the aggregates are dimeric in nature. Observations of isosbestic points in (ANAS) and isoemissive points in (ANFES) and (TRANES) establish that ground-state monomer ⇌ dimer equilibria for both of the systems are preserved in the photoexcited state. The present study further establishes that β-cyclodextrin is the most efficient of the three common cyclodextrins in shifting the equilibria toward the monomer by encapsulating the monomers within its cavity, making β-CD a convenient modulator to control the self-aggregation process. Dynamic light scattering (DLS), quantum chemical calculations, and molecular docking studies provide further support to our propositions.

摘要

稳态和时间分辨光谱研究表明,香豆素类染料的两个成员,香豆素 7(C7)和香豆素 30(C30),在水中会发生自聚集。随着染料在水介质中浓度的增加,除了现有的单体带之外,还出现了新的蓝移吸收带,这表明聚集物是 H 型的。基于吸收的动力学研究表明,C30 的聚集速率比 C7 快一个数量级。从半衰期()数据得到的二级速率动力学表明,聚集物本质上是二聚体。在(ANAS)和(ANFES)和(TRANES)中观察到等消光点,确立了两种体系的基态单体 ⇌ 二聚体平衡在光激发态中得以保持。本研究进一步证实,β-环糊精是三种常见环糊精中最有效的一种,通过将单体包埋在其空腔内,使平衡向单体移动,从而成为控制自聚集过程的方便调节剂。动态光散射(DLS)、量子化学计算和分子对接研究为我们的观点提供了进一步的支持。

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