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离子与新型双齿萘酰亚胺受体相互作用的光物理、NMR 和理论(DFT)研究。

Ion interactions with a new ditopic naphthalimide-based receptor: a photophysical, NMR and theoretical (DFT) study.

机构信息

School of Chemical Sciences, National Institute of Science Education and Research, Bhubaneswar 751005, India.

出版信息

Chemphyschem. 2012 Dec 7;13(17):3882-92. doi: 10.1002/cphc.201200645. Epub 2012 Sep 24.

DOI:10.1002/cphc.201200645
PMID:23007900
Abstract

A new multi-component chemosensor system comprising a naphthalimide moiety as fluorophore is designed and developed to investigate receptor-analyte binding interactions in the presence of metal and non-metal ions. A dimethylamino moiety is utilized as receptor for metal ions and a thiourea receptor, having acidic protons, for binding anions. The system is characterized by conventional analytical methods. The absorption and fluorescence spectra of the system consist of a broad band typical for an intramolecular charge transfer (ICT). The effects of various metal-ion additives on the spectral behavior of the present sensor system are examined in acetonitrile. It is found that among the metal ions studied, alkali/alkaline earth-metal ions and transition-metal ions modulate the absorption and fluorescence spectra of the system. As an additional feature, the anion signaling behavior of the system in acetonitrile is studied. A decrease in fluorescence efficiency of the system is observed upon addition of fluoride and acetate anions. Fluorescence quenching is most effective in the case of fluoride ions. This is attributed to the enhancement of the photoinduced electron transfer from the anion receptor to the fluorophore moiety. Hydrogen-bond interactions between the acidic NH protons of the thiourea moiety and the F(-) anions are primarily attributed to the fluoride-selective signaling behavior. Interestingly, a negative cooperativity for the binding event is observed when the interactions of the system are studied in the presence of both Zn(2+) and F(-) ions. NMR spectroscopy and theoretical calculations are also carried out to better understand the receptor-analyte binding.

摘要

一种新型的多组分化学传感器系统,包含萘酰亚胺部分作为荧光团,旨在研究金属和非金属离子存在下的受体-分析物结合相互作用。一个二甲氨基部分被用作金属离子的受体,而一个具有酸性质子的硫脲受体则用于结合阴离子。该系统通过常规分析方法进行了表征。该系统的吸收和荧光光谱包含一个典型的分子内电荷转移(ICT)的宽带。在乙腈中研究了各种金属离子添加剂对本传感器系统光谱行为的影响。研究发现,在所研究的金属离子中,碱/碱土金属离子和过渡金属离子调节了系统的吸收和荧光光谱。作为一个额外的特点,研究了系统在乙腈中的阴离子信号行为。当加入氟化物和醋酸盐阴离子时,系统的荧光效率降低。在氟离子的情况下,荧光猝灭最为有效。这归因于从阴离子受体到荧光团部分的光诱导电子转移增强。硫脲部分的酸性 NH 质子与 F(-)阴离子之间的氢键相互作用主要归因于氟离子选择性的信号行为。有趣的是,当在系统中存在 Zn(2+)和 F(-)离子时,观察到结合事件的负协同性。还进行了 NMR 光谱和理论计算,以更好地理解受体-分析物结合。

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