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Intramolecular Photo-Physical Processes and Spectral-Luminescence Properties of a Dye Merocyanine 540 and its Complexes with Water

机译:染料新硅胺540的分子内光学 - 物理方法和光谱 - 发光性能及其与水的复合物

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Merocyanine 540 (M540) is famous dye that used in electronics and medicine. An important feature of the dye is a significant intramolecular transfer of the electron density in the excited state. Experimentally was investigated the electronic absorption and fluorescence spectra in different solvents M540. Electronic structure, spectra and rate constants of photo-physical processes of an isolated molecule and its complexes with water molecules were calculated by INDO method with spectroscopic parameterization. Analysis of the results allowed establishing the effect of individual fragments and hydrogen bonds with water on the electronic charge transfer between the terminal units in the state S_1. Examination of photo-physical processes of decomposition of the fluorescent state was showed that the intramolecular processes of decay of the S_1 state are not the cause of the differences calculated and experimental fluorescence quantum yield. Consideration of trans-cis photo-isomerization leads to the elimination of this non-compliance.
机译:Merocyyanine 540(M540)是用于电子和药物的着名染料。染料的一个重要特征是在激发态中的电子密度的显着分子内转移。实验研究了不同溶剂M540中的电子吸收和荧光光谱。通过光谱参数化的Indo方法计算隔离分子的光学物理方法的电子结构,光谱和与水分子的复合物的速率常数。分析结果允许在状态S_1中的端子单元之间的电子电荷传递上建立单个片段和氢键的效果。荧光状态分解的光学物理过程的检查表明,S_1状态衰减的分子内过程不是计算和实验荧光量子产率的差异的原因。考虑Trans-CIS光异构化导致消除这种不合规。

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