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萘酚衍生物在 β-环糊精空腔内荧光调制的光酸强度效应:荧光、差示扫描量热法和分子动力学模拟的见解。

Effect of Photoacid Strength on Fluorescence Modulation of 2-Naphthol Derivatives inside β-Cyclodextrin Cavity: Insights from Fluorescence, Isothermal Calorimetry, and Molecular Dynamics Simulations.

机构信息

Department of Chemistry , Indian Institute of Technology Guwahati , Guwahati 781039 , Assam , India.

出版信息

J Phys Chem B. 2019 Nov 7;123(44):9291-9301. doi: 10.1021/acs.jpcb.9b05457. Epub 2019 Oct 23.

DOI:10.1021/acs.jpcb.9b05457
PMID:31596595
Abstract

Fluorescence response of a photoacid inside a confined environment often differs markedly from the bulk response. Is there any correlation between the extent of fluorescence modulation and the strength of the photoacid? Here, we used three photoacids: 2-naphthol (2OH, p* = 3.3), 6-sulfonate-2-naphthol (6SO-2OH, p* = 3.06), and 6-cyano-2-naphthol (6CN-2OH, p* = 0.6) with remarkably different excited-state acidities to investigate fluorescence modulation inside the nanocavity of β-cyclodextrin (β-CD). Interestingly, we found strong fluorescence modulation for 2OH and 6SO-2OH but almost none for 6CN-2OH. Isothermal calorimetry measurements showed that all three fluorophores form 1:1 inclusion complex with comparable binding constants (285, 420, and 580 M for 2OH, 6SO-2OH, and 6CN-2OH, respectively). Molecular dynamics simulation further revealed that binding modes are quite similar, and the distribution of water molecules around the proton-donating hydroxyl group of the photoacids are also comparable. Consequently, the difference in the fluorescence response should be accounted solely to the difference in the photoacidity strengths.

摘要

在受限环境中,光酸的荧光响应通常与本体响应有明显的不同。荧光调制的程度与光酸的强度之间是否存在相关性?在这里,我们使用了三种光酸:2-萘酚(2OH,p* = 3.3)、6-磺酸-2-萘酚(6SO-2OH,p* = 3.06)和 6-氰基-2-萘酚(6CN-2OH,p* = 0.6),它们具有显著不同的激发态酸度,以研究β-环糊精(β-CD)纳米腔内的荧光调制。有趣的是,我们发现 2OH 和 6SO-2OH 具有很强的荧光调制,但 6CN-2OH 几乎没有。等温热力学测量表明,所有三种荧光团都与β-CD 形成了 1:1 的包络络合物,结合常数相当(2OH、6SO-2OH 和 6CN-2OH 的结合常数分别为 285、420 和 580 M)。分子动力学模拟进一步表明,结合模式非常相似,质子供体羟基周围水分子的分布也相当。因此,荧光响应的差异应该完全归因于光酸强度的差异。

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