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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Fluorescence coupled with electrochemical approach at the bulk and the interface region of hydrogen-bonding self assemblies of urea derivatives with DDP dye in aqueous solution
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Fluorescence coupled with electrochemical approach at the bulk and the interface region of hydrogen-bonding self assemblies of urea derivatives with DDP dye in aqueous solution

机译:荧光耦合在大量的电化学方法和尿液染料中尿液粘合自组装的封粘合区域,水溶液中的液体溶液

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Photophysical and electrochemical techniques were employed to hydrogen-bonding self assemblies forming solutes (Urea, Dimethylurea and Tetramethylurea) in the presence of 4-dicyanomethylene 2, 6-dimethyl-4H-pyran (DDP) dye. Addition of urea derivatives to DDP dye (Intramolecular Charge Transfer (ICT)) results in a fluorescence enhancement accompanied with a significant shift. Fluorescence lifetime behavior exhibits a tri-exponential decay with a large variation in the fluorescence lifetime and relative amplitude distribution. The coexistence of three different fluorescence lifetime components of DDP with urea derivatives signifies the existence of heterogeneous micro environment. The dye is surrounded by varying proportion of solute and water molecules are established from fluorescence lifetime studies. Urea derivatives govern the excited state characteristics of DDP dye resulting in the formation and promotion of different microenvironment which are clearly distinguishable. The existence of multi environment attributed to urea-water structural behaviour is authenticated by electrochemical impedance spectral studies (EIS). A large variation in the contour pattern, shape and intensity in 3D fluorescence contour spectra of dye with urea validate the existence of dye in a heterogeneous micro environment. The hydrophobicity of urea derivatives along with the hydrogen-bonding properties of urea-water and urea-urea influence the photophysical and electrochemical nature of dye is emphasized. (c) 2019 Elsevier B.V. All rights reserved.
机译:使用光学和电化学技术在4-二氰基亚甲基2,6-二甲基-4H-吡喃(DDP)染料存在下形成溶质(尿素,二甲基脲和四甲基脲)的氢键合自组装。向DDP染料添加尿素衍生物(分子内电荷转移(ICT))导致荧光增强伴随着显着变化。荧光寿命行为表现出三指数衰减,荧光寿命和相对幅度分布的大变化。具有尿素衍生物的DDP的三种不同荧光寿命组分的共存意味着存在异质微环境。染料通过不同比例的溶质和水分子从荧光寿命研究建立。尿素衍生物控制DDP染料的激发状态特征,导致不同微环境的形成和促进,这明显可区分。通过电化学阻抗谱研究(EIS)认证归因于尿素结构行为的多环境的存在。用尿素的3D荧光轮廓谱的轮廓图案,形状和强度的大变化验证了异质微环境中染料的存在。强调尿素衍生物与尿素水和尿素 - 尿素的氢键性能影响染料的氢键合性能的疏水性。 (c)2019 Elsevier B.v.保留所有权利。

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