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Formation Mechanisms of Equilibrium Component Composition of Molecular Layers of Polymethine Dyes

机译:聚次甲基染料分子层平衡组分组成的形成机理

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摘要

We study the concentration dependences for the absorption spectra and component composition of molecular layers from three homologous series of symmetric polymethine dyes of different electron-donating ability of their terminal heterocyclic groups. We find that a change in the layer thickness leads to a change in the width and position of the spectrum due to a change in the number of absorption bands. The number of bands of monomers increases with increasing chain length and electron-donating ability. The concentration ratio of monomers and associated forms depends on the spatial orientation of molecules in the layer. The electron-donating ability of terminal groups affects the angle between the chromophores of molecules that form a dimer and the intensity ratio between the short- and long-wavelength absorption bands of dimers. We conclude that the effect of the thickness of the layer on its spectral parameters is determined by the degree of intramolecular electron asymmetry that arises as a result of the interaction of chemically symmetric molecules with charges of the substrate surface and upon intermolecular interaction. This asymmetry leads to changes in free energies of ground states of monomeric molecules and, as a consequence, to an increase in equilibrium concentrations of cis-stereoisomeric forms in the layer.
机译:我们研究了来自其末端杂环基团具有不同供电子能力的三种对称聚次甲基对称染料系列的分子层吸收光谱和组分组成的浓度依赖性。我们发现,由于吸收带数目的变化,层厚度的变化导致光谱的宽度和位置的变化。单体的带数随链长和给电子能力的增加而增加。单体及其缔合形式的浓度比取决于层中分子的空间取向。末端基团的给电子能力影响形成二聚体的分子的发色团之间的角度以及二聚体的短波长和长波长吸收带之间的强度比。我们得出结论,该层的厚度对其光谱参数的影响取决于分子内电子不对称程度,分子内电子不对称程度是由于化学对称分子与底物表面的电荷相互作用以及分子间相互作用而产生的。这种不对称导致单体分子基态的自由能变化,并因此导致层中顺式-立体异构形式的平衡浓度增加。

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