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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Electronic structure and photochemistry of squaraine dyes:basic theoretical analysis and direct detection of the photoisomer of a symmetrical squarylium cyanine
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Electronic structure and photochemistry of squaraine dyes:basic theoretical analysis and direct detection of the photoisomer of a symmetrical squarylium cyanine

机译:方酸菁染料的电子结构和光化学:对称方酸菁花青的光异构体的基本理论分析和直接检测

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The photoisomerizalion kinetics of a squaraine dye has been the object both of experimental investigation and of interpretation in the framework of a qualitative theoretical model formulated by the aid of simple HMO calculations and orbital symmetry considerations.Such a model has first confirmed that the electronic structure and the spectroscopic properties of symmetrical squaraines are related to those of the parent cyanines,with ketocyanines as intermediate systems.Extension of the approach to structures twisted by 90° about a polymethine bond has then provided insight into the electronic aspects and the mechanism of the photoisomerization of the squaraine under study.The reaction,previously indirectly investigated by fluorescence analysis,has been directly monitored by laser flash photolysis.These experiments indicate that,while photoisomerization is likely the main radiationless decay route from the spectroscopic minimum of the lowest excited singlet state(S,),the cis photoisomer is produced with only a 1% yield,likely because of an unfavourable cis/trans branching ratio from the perpendicular minimum of the Srstate potential energy surface.In contrast with what found for symmetrical cyanines,an increase in the solvent polarity was found to accelerate both the direct,excited-state reaction and,to a much larger extent,the ground-state back-isomerization.Such observations are consistent with predictions of the theoretical model and provide a clue for the identification of the isomerization coordinate.
机译:在通过简单的HMO计算和轨道对称性考虑而建立的定性理论模型的框架内,方酸染料的光异质子动力学已经成为实验研究和解释的对象。这种模型首先证实了电子结构和对称方晶的光谱性质与母体花青的光谱性质有关,其中酮蓝为中间体系统。然后,扩展围绕聚次甲基键扭曲90°的结构的方法,从而提供了对电子方面和光致异构化机理的认识。该反应以前是通过荧光分析间接研究的,已经通过激光闪光光解法直接进行了监测。这些实验表明,从最低激发单重态的光谱最小值来看,光异构化可能是主要的无辐射衰变途径。 ,),顺式光异构体仅从Srstate势能面的垂直最小值处顺式/反式支化比不利,才生产出1%的收率。与对称花菁相比,溶剂极性的增加会加速两者直接,激发态反应以及更大范围的基态反异构化。这些观察结果与理论模型的预测相符,并为鉴定异构化坐标提供了线索。

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