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Vibrational fingerprint of the structural tuning in push-pull organic chromophores with quinoid or proaromatic spacers

机译:带有醌或原芳香族间隔基的推挽式有机发色团的结构调整的振动指纹图

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The Raman spectra of a series of push-pull molecules containing probenzenoid or quinoid spacers which are substituted with 1,3-dithiol-2-ylidene as donor and dicyano-methylene or barbituric acid as acceptors have been analyzed. The experimental spectra have been assigned and interpreted according to density functional theory calculations. Correlations between the Raman spectra of the isolated spacers and of the substituted molecules have been done. Raman bands in the 1620-1560 cm(-1) interval provide vibrational markers of the quinoid <-> aromatic structural evolution. This finding is supported by a careful inspection of geometrical parameters, namely, bond length alteration data and particular bond distances. As a result, the peak positions and relative intensities of these Raman features can be used to evaluate the benzenoid character of the spacer as a function of the donor/acceptor substitution pattern. This paper shows that Raman spectroscopy is a powerful spectroscopic tool for the analysis of the conjugational properties (i.e., intramolecular donor -> acceptor charge transfer) of new organic materials. (c) 2007 American Institute of Physics.
机译:分析了一系列推挽分子的拉曼光谱,这些推挽分子包含被1,3-二硫醇-2-亚烷基作为供体和二氰基亚甲基或巴比妥酸作为受体的取代的类扁桃体或醌类间隔基。实验光谱已经根据密度泛函理论计算进行了分配和解释。已经完成了分离的间隔基和取代的分子的拉曼光谱之间的相关性。在1620-1560 cm(-1)区间内的拉曼带提供了醌型芳香结构演变的振动标记。通过仔细检查几何参数,即键长变化数据和特定键距,可以支持此发现。结果,这些拉曼特征的峰位置和相对强度可用于评估作为供体/受体取代模式的函数的间隔基的苯类特性。本文表明拉曼光谱法是分析新型有机材料的共轭性质(即分子内供体->受体电荷转移)的强大光谱工具。 (c)2007年美国物理研究所。

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