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聚甲炔染料和H聚集体中光学能带形状的本质:慵懒混沌与激子。与二聚体、H*聚集体和J聚集体的比较。

Nature of the optical band shapes in polymethine dyes and H-aggregates: dozy chaos and excitons. Comparison with dimers, H*- and J-aggregates.

作者信息

Egorov Vladimir V

机构信息

Photochemistry Center, Russian Academy of Sciences, 7a Novatorov Street, Moscow 119421, Russian Federation.

出版信息

R Soc Open Sci. 2017 May 31;4(5):160550. doi: 10.1098/rsos.160550. eCollection 2017 May.

Abstract

Results on the theoretical explanation of the shape of optical bands in polymethine dyes, their dimers and aggregates are summarized. The theoretical dependence of the shape of optical bands for the dye monomers in the vinylogous series in line with a change in the solvent polarity is considered. A simple physical (analytical) model of the shape of optical absorption bands in H-aggregates of polymethine dyes is developed based on taking the dozy-chaos dynamics of the transient state and the Frenkel exciton effect in the theory of molecular quantum transitions into account. As an example, the details of the experimental shape of one of the known H-bands are well reproduced by this analytical model under the assumption that the main optical chromophore of H-aggregates is a tetramer resulting from the two most probable processes of inelastic binary collisions in sequence: first, monomers between themselves, and then, between the resulting dimers. The obtained results indicate that in contrast with the compact structure of J-aggregates (brickwork structure), the structure of H-aggregates is not the compact pack-of-cards structure, as stated in the literature, but a loose alternate structure. Based on this theoretical model, a simple general (analytical) method for treating the more complex shapes of optical bands in polymethine dyes in comparison with the H-band under consideration is proposed. This method mirrors the physical process of molecular aggregates forming in liquid solutions: aggregates are generated in the most probable processes of inelastic multiple binary collisions between polymethine species generally differing in complexity. The results obtained are given against a background of the theoretical results on the shape of optical bands in polymethine dyes and their aggregates (dimers, H*- and J-aggregates) previously obtained by V.V.E.

摘要

总结了有关聚甲炔染料及其二聚体和聚集体中光学带形状的理论解释的结果。考虑了乙烯同系物系列中染料单体的光学带形状随溶剂极性变化的理论依赖性。基于在分子量子跃迁理论中考虑瞬态的多兹 - 混沌动力学和弗伦克尔激子效应,建立了聚甲炔染料H - 聚集体中光吸收带形状的简单物理(分析)模型。例如,在假设H - 聚集体的主要光学发色团是由两个最可能的非弹性二元碰撞过程依次产生的四聚体的情况下,该分析模型很好地再现了已知H带之一的实验形状细节:首先是单体之间,然后是所得二聚体之间。所得结果表明,与J - 聚集体的紧密结构(砌砖结构)不同,H - 聚集体的结构并非如文献所述的紧密纸牌结构,而是一种松散的交替结构。基于该理论模型,提出了一种简单通用(分析)方法,用于处理与所考虑的H带相比更复杂的聚甲炔染料光学带形状。该方法反映了液体溶液中分子聚集体形成的物理过程:聚集体是在通常复杂性不同的聚甲炔物种之间最可能的非弹性多次二元碰撞过程中产生的。所得结果是在V.V.E.先前获得的关于聚甲炔染料及其聚集体(二聚体、H * - 和J - 聚集体)中光学带形状的理论结果背景下给出的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85fe/5451785/49f59c6ec911/rsos160550-g1.jpg

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