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首页> 外文期刊>Journal of Fluorescence >Photophysical and Electrochemical Studies of 4-Dicyanomethylene 2,6-Dimethyl-4H-Pyran (DDP) Dye with Amides in Water
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Photophysical and Electrochemical Studies of 4-Dicyanomethylene 2,6-Dimethyl-4H-Pyran (DDP) Dye with Amides in Water

机译:4-二甘酒甲基2,6-二甲基-4H-吡喃(DDP)染料在水中的光药和电化学研究

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摘要

Photophysical and electrochemical studies of DDP dye with Formamide and alkyl substituted amides were carried out in water. Addition of Formamide (F), Acetamide (ACM), N,N-Dimethylformamide (DMF), Dimethylacetamide (DMAC) to DDP dye result in an isosbestic point. A fluorescence enhancement of DDP dye is observed on the addition of amides. Apart from the fluorescence enhancement, the addition of formamide result in no significant shift in the position of emission maxima of DDP dye whereas addition of ACM and DMF result in a shift towards the blue and red region respectively. DDP dye exhibits three lifetime components which are unique in lifetime and amplitude. The fluorescence lifetime and relative amplitude of DDP dye varies significantly by addition of amides in aqueous solution which are influenced by amidewater hydrogen-bonding network and hydrophobic influences of the alkyl substituted amides. The nature of interaction between dye and amide be predominantly through hydrogen-bonding wherein the carbonyl oxygen (C=O) of amides are bonded to N-H hydrogen of DDP dye through water molecule. The existence of more than one microenvironment of DDP dye in aqueous phase is elucidated by Electrochemical Impedence Spectroscopy (EIS) through Nyquist plots wherein it signifies that there exist at least three different micro environments which support the existence of different fluorescence lifetimes. Fluorescence spectral technique is used as an efficient tool to elucidate the nature of interaction of water soluble probe with hydrogen-bonding solutes is established in our studies.
机译:用甲酰胺和烷基取代酰胺的DDP染料的光物理和电化学研究在水中进行。加入甲酰胺(F),乙酰胺(ACM),N,N-二甲基甲酰胺(DMF),二甲基乙酰胺(DMAC)至DDP染料导致ISOSBestBeest。在加入酰胺时观察到DDP染料的荧光增强。除了荧光增强外,甲酰胺的加入导致DDP染料发射最大位置的位置无显着变化,而加入ACM和DMF将分别导致朝向蓝色和红色区域的变化。 DDP染料表现出三个终身部件,寿命和幅度是独特的。通过在水溶液中加入酰胺水溶液和烷基取代的酰胺的疏水影响,荧光寿命和DDP染料的相对幅度显着各异。染料与酰胺之间的相互作用的性质主要是通过氢键合,其中酰胺的羰基氧(C = O)通过水分子键合至DDP染料的N-H氢。通过奈奎斯特图阐明了水相中DDP染料的多个微环境的存在性,其中通过奈奎斯特图阐明了存在至少三种不同的微环境,其支持不同荧光寿命的存在。荧光光谱技术用作有效的工具,以阐明水溶性探针与氢键溶解的相互作用的性质在我们的研究中建立。

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