首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Structural and vibrational studies of molecular conductors using quantum mechanical methods: 1,3-Dithiole-2-thione, 1,3-dithiole-2-one, 1,3-dioxole-2-one and 1,3-dioxole-2-thione
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Structural and vibrational studies of molecular conductors using quantum mechanical methods: 1,3-Dithiole-2-thione, 1,3-dithiole-2-one, 1,3-dioxole-2-one and 1,3-dioxole-2-thione

机译:使用量子力学方法对分子导体的结构和振动研究:1,3-二硫代-2-硫酮,1,3-二硫代-2-酮,1,3-二氧-2-酮和1,3-二氧-2-酮硫酮

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摘要

Computations were carried out by employing the RHF and density functional theory (DFT) methods to investigate the geometries, atomic charges, harmonic vibrational frequencies for the 1,3-dithiole-2-thione (DTT), 1,3-dithiole-2-one (DTO), 1,3-dioxole-2-thione (DOT) and 1,3-dioxole-2-one (DOO) molecules and their radical cations. The geometrical parameters and atomic charges on various atomic sites of the DTT and DOT molecules and their radical cations suggest extended conjugation in these systems. Contrary to this, for the DOO+ and DTO+ ions there is no evidence in favour of such conjugation, however, the neutral molecules exhibit some conjugation. Harmonic forced field and vibrational mode calculations provided convincing theoretical evidence for the reassignment of some fundamental vibrational modes for all the four molecules. In going from the neutral species to the charged ions for all the four cases the C=C stretching frequency is found to decrease drastically. The C=S stretching frequency reduces drastically for the DTT and DOT molecules as compared to their radical cations whereas the C=O stretching frequency is found to increase in going from the neutral molecule to its radical cation for the DOO and DTO molecules. The ring stretching mode with a(1) symmetry and C=C and C=O/S stretching modes in these molecules appear to help in conversion of neutral molecule into respective radical cation and neighbouring radical cation into respective neutral molecule. Thus, there appears the feasibility of stretching vibrational mode coupling with electron transfer.
机译:通过使用RHF和密度泛函理论(DFT)方法进行计算,以研究1,3-二硫代-2-硫酮(DTT),1,3-二硫代-2-的几何形状,原子电荷,谐波振动频率一个(DTO)分子,1,3-二氧杂环丁-2-硫酮(DOT)和1,3-二氧杂环丁-2-酮(DOO)分子及其自由基阳离子。 DTT和DOT分子及其自由基阳离子的各个原子上的几何参数和原子电荷表明这些系统中的扩展共轭。与此相反,对于DOO +和DTO +离子,没有证据支持这种共轭,但是中性分子表现出一些共轭。谐波力场和振动模式的计算为所有四个分子的一些基本振动模式的重新分配提供了令人信服的理论证据。在所有四种情况下,从中性物质转变为带电离子时,发现C = C拉伸频率急剧降低。与DTT和DOT分子的自由基阳离子相比,DTT和DOT分子的C = S拉伸频率大大降低,而对于DOO和DTO分子,从中性分子到其自由基阳离子的C = O拉伸频率增加。这些分子中具有a(1)对称性且C = C和C = O / S拉伸模式的环拉伸模式似乎有助于将中性分子转化为相应的自由基阳离子,并将相邻的自由基阳离子转化为相应的中性分子。因此,似乎有可能扩展振动模式与电子传递的耦合。

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