Amitha G S, Rajan Vijisha K, Muraleedharan K, Vasudevan Suni
Department of Chemistry, National Institute of Technology Calicut, Calicut, Kerala, 673601, India.
Department of Chemistry, University of Calicut, Calicut, Kerala, 673601, India.
J Fluoresc. 2019 Jan;29(1):279-291. doi: 10.1007/s10895-018-02338-0. Epub 2019 Jan 9.
A novel 4,4'-fluoresceinoxy bisphthalonitrile FPN is synthesized from fluorescein and 4-nitrophthalonitrile by aromatic nucleophilic ipso nitro substitution reaction. The structure of FPN constitutes phthalonitrile-fluorescein-phthalonitrile, acceptor-donor-acceptor, A-D-A form and the solvatochromic study of newly synthesized compound FPN was done in hexane, cyclohexane, CHCl, DCM, DMF, acetonitrile, ethanol and in methanol. The aggregation behavior of FPN was investigated in good-poor solvent mixture DMF-water in various proportions and the molecule was found to be exhibiting Aggregation Induced Emission Enhancement AIEE for volume percentage of water beyond 50% with a significant hypsochromic shift of 70 nm in the emission maxima from 458 to 388 nm. This phenomenon is termed as Aggregation Induced Blue Shifted Emission Enhancement AIBSEE and was reported in substituted phthalonitrile for the first time. The chemo sensing activity of FPN with various transition metal ions also has been checked by fluorescence spectroscopy where the new molecule FPN exhibited fluorescence turn OFF behaviour towards Fe ion in acetonitrile-methanol ACN-MeOH solution. The binding stoichiometry of FPN with Fe was verified by Job's plot analysis and Density Functional Theory DFT-B3LYP computational methodology by using Gaussian 09 software. Graphical Abstract A novel 4,4'-fluoresceinoxy bisphthalonitrile FPN was synthesized by base catalyzed coupling reaction of fluorescein with 4 nitrophthalonitrile. The newly synthesized compound has been characterized using UV-vis, FTIR, 1HNMR, fluorescence spectral data and single crystal X-ray diffraction studies. The compound FPN was found to be exhibiting positive solvatochromism in various organic solvents and Aggregation Induced Blue Shifted Emission Enhancement AIBSEE in DMF-aqueous mixture when water volume exceed above 50%. As a metal ion chemo sensor FPN exhibited a selective fluorescence turn OFF behavior towards Fe3+ ion in the stoichiometric ratio 1:2 in acetonitrile-methanol mixture and limit of detection LOD of Fe3+ by FPN was calculated to be 3.665 μM.
通过荧光素与4-硝基邻苯二甲腈的芳香亲核本位硝基取代反应合成了一种新型的4,4'-荧光素氧基双邻苯二甲腈FPN。FPN的结构为邻苯二甲腈-荧光素-邻苯二甲腈,即受体-供体-受体,A-D-A形式,并且在己烷、环己烷、CHCl、二氯甲烷、N,N-二甲基甲酰胺、乙腈、乙醇和甲醇中对新合成的化合物FPN进行了溶剂化显色研究。在不同比例的良-不良溶剂混合物N,N-二甲基甲酰胺-水中研究了FPN的聚集行为,发现当水的体积百分比超过50%时,该分子表现出聚集诱导发光增强(AIEE),发射最大值从458 nm发生70 nm的显著蓝移至388 nm。这种现象被称为聚集诱导蓝移发射增强(AIBSEE),首次在取代邻苯二甲腈中报道。还通过荧光光谱法检测了FPN与各种过渡金属离子的化学传感活性,其中新分子FPN在乙腈-甲醇(ACN-MeOH)溶液中对Fe离子表现出荧光猝灭行为。通过Job曲线分析以及使用高斯09软件的密度泛函理论(DFT-B3LYP)计算方法验证了FPN与Fe的结合化学计量比。图形摘要 通过荧光素与4-硝基邻苯二甲腈的碱催化偶联反应合成了一种新型的4,4'-荧光素氧基双邻苯二甲腈FPN。使用紫外-可见光谱、傅里叶变换红外光谱、1H核磁共振光谱、荧光光谱数据和单晶X射线衍射研究对新合成的化合物进行了表征。发现化合物FPN在各种有机溶剂中表现出正溶剂化显色性,并且当水的体积超过50%时,在N,N-二甲基甲酰胺-水混合物中表现出聚集诱导蓝移发射增强(AIBSEE)。作为一种金属离子化学传感器,FPN在乙腈-甲醇混合物中对Fe3+离子表现出选择性荧光猝灭行为,化学计量比为1:2,FPN对Fe3+的检测限计算为3.665 μM。