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首页> 外文期刊>Dyes and Pigments >Synthesis, structural/photophysical characterization and theoretical investigations with new beta-pyridinium/quinolinium and beta-bromine substituted bis(1,3-dimethylbarbituric acid) trimethine oxonol dyes that display large Stokes shifts
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Synthesis, structural/photophysical characterization and theoretical investigations with new beta-pyridinium/quinolinium and beta-bromine substituted bis(1,3-dimethylbarbituric acid) trimethine oxonol dyes that display large Stokes shifts

机译:用新的β-吡啶/喹啉和β-溴取代的双(1,3-二甲基巴比妥酸)三甲醇氧染料的合成,结构/光物理表征和理论研究呈现大型斯托克斯偏移

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摘要

An efficient 3-step procedure for the synthesis of novel beta-pyridinium/quinolinium/bromine-substituted bis(1,3-dimethylbarbituric acid)trimethine oxonol dyes was developed that involves a simple triethylamine-promoted condensation of 1,3-dimethylbarbituric acid with preformed vinamidinium salts. (HNMR)-H-1, C-13 NMR, IR and mass spectral data confirmed the structures of the dyes. Solutions of the dyes in CH(3)GN exhibited absorption and fluorescence emission maxima in the range of 467-480 nm and 531-712 nm, respectively, identifying that the dyes show unusually large Stokes shifts (similar to 230 nm). Investigating the photophysical properties of dye 3a in a series of organic solvents with different polarity confirmed intramolecular charge transfer (ICT). Optimized geometries of the synthesized dyes in the ground state calculated using density functional theory (DFT) at the B3LYP/6-311G(d,p) theory level identified that planar cis and trans configurations were preferred for the pyridinium/quinolinium and bromine substituted dyes, respectively. TD-DFT calculations on the dye excited state structures identified that rotation of the bulky pyridinium substituents during relaxation is responsible for the large Stokes shift. The unique properties of the dyes suggest they could find use as fluorescent visualizers for intracellular imaging.
机译:开发了一种高效的3步骤,用于合成新型β-吡啶/喹啉/溴 - 取代的双(1,3-二甲基巴比妥酸)三甲醇氧染料,其涉及1,3-二甲基巴比妥酸的简单三乙胺促进的凝结预先形成的vinamidinium salts。 (HNMR)-H-1,C-13 NMR,IR和质谱数据证实了染料的结构。 CH(3)GN中染料的溶液分别在467-480nm和531-712nm的范围内表现出吸收和荧光发射最大值,鉴定染料呈异常大的斯托克斯偏移(类似于230nm)。在具有不同极性的一系列有机溶剂中研究染料3A的光物理性质证实了分子内电荷转移(ICT)。在B3LYP / 6-311G(D,P)理论水平下使用密度官能理论(DFT)计算的地态中合成染料的优化几何形状鉴定了吡啶/喹啉和溴取代染料的平面顺式和反式构态, 分别。染料激发态结构的TD-DFT计算鉴定出在松弛期间庞大的吡啶鎓取代基的旋转是对大型斯托克斯偏移的负责。染料的独特性质表明它们可以用作细胞内成像的荧光调速剂。

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