首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Relationship between the Molecular Structure of Cyanine Dyes and the Vibrational Fine Structure of their Electronic Absorption Spectra
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Relationship between the Molecular Structure of Cyanine Dyes and the Vibrational Fine Structure of their Electronic Absorption Spectra

机译:花青染料的分子结构与其电子吸收光谱的振动精细结构之间的关系

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摘要

Electronic absorption spectra of symmetrical cyanine dyes show vibronic sub-bands, attributed to the symmetric C-C valence vibration of the polymethine chain in the electronic excited state. Displacements in the equilibrium configuration between electronic ground and excited states of cyanine dyes lead to longer C-C bonds in the excited state. Additionally, in the electronic ground state, a small degree of bond localisation always remains in the chain depending on the different heterocyclic terminal groups. Our investigations suggest that we can use (3)J(H,H) coupling constants in the polymethine chain to characterise the bond localisation within the chain. Based on these values and the Franck-Condon principle, the intensity distribution among the vibrational sub-bands can be explained.
机译:对称花菁染料的电子吸收光谱显示出振动子带,这归因于处于电子激发态的聚次甲基链的对称C-C价振动。花青染料的电子基态和激发态之间的平衡构型位移导致激发态的C-C键更长。另外,在电子基态下,取决于不同的杂环末端基团,在链中始终保留少量的键定位。我们的研究表明,我们可以使用聚次甲基链中的(3)J(H,H)耦合常数来表征链中的键定位。基于这些值和弗兰克-康登原理,可以解释振动子带之间的强度分布。

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