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The Influence of the Molecular Structure of Cyanine Dye on the Component Composition of Molecular Layers

机译:花青染料的分子结构对分子层组分组成的影响

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The formation of the component composition of symmetric cationic cyanine dyes on glass is studied. The absorption spectra of layers of three homologous series of dyes with end heterocyclic groups of different spatial and chemical compositions are measured, and the absorption spectra of monomer components and aggregates are separated. The component compositions of layers of different thicknesses are compared. It is shown that the widening of the absorption spectra of molecular layers against the spectra of ethanol solutions of these compounds is caused mainly by the formation of various monomer stereoisomers and molecular aggregates and their interaction with the substrate surface and the neighborhood. The number of isomer forms and their relative concentrations depend on the layer thickness, the electron donor ability and spatial structure of end groups, and the cation conjugation chain length. The influence of the anion manifests itself only in the concentration ratio of the formed monomers and a small shift of the maxima of their absorption bands. The increase in the number of monomer forms produced in the layer corresponds to the increase in the conjugation chain length. Spatial obstacles created by heterocyclic groups inhibit the formation of definite stereoisomers, which reduces the number of components of the layer.
机译:研究了对称阳离子花青染料在玻璃上的组成组成。测量了具有不同空间和化学组成的末端杂环基团的三个同源系列染料的层的吸收光谱,并分离了单体组分和聚集体的吸收光谱。比较了不同厚度的层的成分组成。结果表明,相对于这些化合物的乙醇溶液的光谱,分子层的吸收光谱变宽主要是由于各种单体立体异构体和分子聚集体的形成以及它们与底物表面和邻域的相互作用所致。异构体形式的数目及其相对浓度取决于层厚度,电子给体能力和端基的空间结构以及阳离子共轭链的长度。阴离子的影响仅在所形成的单体的浓度比和其吸收带最大值的微小偏移中体现出来。在层中产生的单体形式的数量的增加对应于共轭链长度的增加。杂环基团产生的空间障碍会抑制确定的立体异构体的形成,从而减少了该层的组分数量。

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