A water-soluble small molecular fluorescent sensor based on phosphazene platform for selective detection of nitroaromatic compounds.

IF 3.2 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Süreyya Oğuz Tümay, Ahmet Şenocak, Bünyemin Çoşut, Hüsniye Ardıç Alidağı, Serkan Yeşilot
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引用次数: 3

Abstract

Nitro-aromatic compounds have a deleterious effect on the environment and they are extremely explosive. Therefore, societal concern about exposure to nitro-aromatic compounds encourages researchers to develop selective and sensitive detection platforms for nitro-aromatic compounds in recent years. In this paper, a new 100% water-soluble cyclotriphosphazene-based bridged naphthalene material (4) was prepared as a small molecule fluorescent sensor for ultra-selective detection of nitro-aromatic compounds. The chemical structure of 4 was extensively characterized by mass spectrometry and nuclear magnetic resonance spectroscopies (31P, 13C, 1H). The photo-physical properties of the newly developed sensing system were investigated by steady-state fluorescence and UV-Vis absorption spectroscopies. The fluorescence sensor behaviors were extensively evaluated after treatment with the most commonly used metal cations, anions, competitive aromatic compounds, saccharides, and organic acids. The developed fluorescent sensing system (4) demonstrated ultra-selective fluorescence "turn-off" signal change toward nitro-aromatic compounds while other tested competitive species caused negligible changes. To evaluate selectivity, time-resolved, steady-state 3D-fluorescence and UV-Vis absorption spectroscopies were used in fully aqueous media. Moreover, theoretical calculations (density functional theory and time-dependent density functional theory) were applied and discussed to identify fluorescence sensing mechanisms toward nitroaromatic compounds for the presented sensing system.

基于磷腈平台的选择性检测硝基芳香族化合物的水溶性小分子荧光传感器。
硝基芳香族化合物对环境有害,具有极强的爆炸性。因此,近年来,社会对硝基芳香族化合物暴露的关注促使研究人员开发选择性和灵敏度高的硝基芳香族化合物检测平台。本文制备了一种新的100%水溶性环三磷腈基桥接萘材料(4)作为小分子荧光传感器,用于硝基芳香族化合物的超选择性检测。4的化学结构通过质谱和核磁共振谱(31P, 13C, 1H)进行了广泛的表征。利用稳态荧光光谱和紫外-可见吸收光谱研究了该传感系统的光物理特性。在用最常用的金属阳离子、阴离子、竞争性芳香族化合物、糖和有机酸处理后,对荧光传感器的行为进行了广泛的评估。开发的荧光传感系统(4)显示了对硝基芳香族化合物的超选择性荧光“关闭”信号变化,而其他被测竞争物种的变化可以忽略不计。为了评价选择性,在全水介质中使用了时间分辨、稳态3d荧光和紫外可见吸收光谱。此外,应用理论计算(密度泛函理论和时变密度泛函理论)探讨了该传感系统对硝基芳香族化合物的荧光传感机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Photochemical & Photobiological Sciences
Photochemical & Photobiological Sciences 生物-生化与分子生物学
CiteScore
5.60
自引率
6.50%
发文量
201
审稿时长
2.3 months
期刊介绍: A society-owned journal publishing high quality research on all aspects of photochemistry and photobiology.
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