首页> 外文期刊>Journal of the American Chemical Society >Incisive structure-spectroscopic correlation in oligothiophenes functionalized with (+/-) inductive/mesomeric fluorine groups: Joint Raman and DFT study
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Incisive structure-spectroscopic correlation in oligothiophenes functionalized with (+/-) inductive/mesomeric fluorine groups: Joint Raman and DFT study

机译:(+/-)诱导/中聚氟基官能化的低聚噻吩的尖锐结构-光谱关系:联合拉曼和DFT研究

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This paper presents a combined experimental Raman and density functional theory (DFT) study of a series of oligothiophenes with variable T-core lengths and substituted at the alpha,omega- and beta,beta'-terminal positions with perfluorohexyl, perfluorohexylcarbonyl, perfluoroarene, and cyano groups. The study covers the neutral and the electrochemically oxidized samples, The spectra have been assigned with the help of B3LYP/6-31G** calculations and interpreted by the predictions of effective conjugation coordinate (ECC) theory. Direct relationships between the bond length alternation (BLA) parameters and the Raman wavenumbers of the two most important bands of the spectra have been outlined showing the collective character of their electronic and vibrational properties. It is found that the topology of the thienyl electronic structure is not uniform along the conjugated core with the external rings more aromatic, whereas for the innermost part the pi-electron delocalization is greater and extends with the increment of chain length. Perfluorohexyl substitution finely tunes the electronic properties via negative inductive effects. The beta,beta' isomers exhibit larger conformational distortion, which strongly modifies the mean conjugation length. Oxidation provokes electronic structure quinoidization spreading over the whole system but more marked in the central part of the pi-core. The Raman features associated to quinoidization in the oxidized species have been interpreted in relation to the oligomer core length and the substitution regiochemistry.
机译:本文提出了一系列拉曼和密度泛函理论(DFT)的组合实验,研究了一系列T核长度可变且在α,ω和β,β'末端位置被全氟己基,全氟己基羰基,全氟芳烃和氰基。该研究涵盖了中性和电化学氧化的样品,借助B3LYP / 6-31G **计算分配了光谱,并通过有效共轭坐标(ECC)理论的预测对其进行了解释。概述了键长交替(BLA)参数与光谱的两个最重要谱带的拉曼波数之间的直接关系,显示了它们的电子和振动特性的共同特征。发现噻吩基电子结构的拓扑沿着共轭核不均匀,外环更芳香,而对于最内部分,π电子离域更大,并随着链长的增加而扩展。全氟己基取代可通过负感应效应微调电子性能。 β,β'异构体表现出更大的构象变形,这强烈地改变了平均缀合长度。氧化引起电子结构喹啉化作用扩散到整个系统中,但在pi核的中心部分更明显。与低聚物核心长度和取代区域化学有关的解释了与氧化物种中的喹啉化有关的拉曼特征。

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