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首页> 外文期刊>Journal of sulfur chemistry >A computational investigation on the molecular structure, electronic properties and intramolecular hydrogen bonding interaction of 1,1,1-trifluoro-4-mercaptobut-3-ene-2-thione in ground and electronic excited state
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A computational investigation on the molecular structure, electronic properties and intramolecular hydrogen bonding interaction of 1,1,1-trifluoro-4-mercaptobut-3-ene-2-thione in ground and electronic excited state

机译:1,1,1-三氟-4-巯基丁-3-烯-2-硫酮在基态和电子激发态下的分子结构,电子性质和分子内氢键相互作用的计算研究

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摘要

The hydrogen bond (HB) strength, geometry optimization, vibrational frequencies and several well-established indices of aromaticity in 1,1,1 -trifluoro-4-mercaptobut-3-ene-2-thione and its 15 derivatives in two positions, R1 and R2, have been investigated by means of the density functional theory (DFT) method with 6-311 + +G** basis set in the gas phase. The obtained results show that the HB strength is mainly governed by resonance variations inside the chelate ring induced by the substituent groups. The following substituents have been taken into consideration: NO2, SCF3, Ph, PhOCH3, SCOCH3, CH2OCH3 and CH2OH. The strongest S-H...S HBs belong to PhOCH3-substituted system in both positions, whereas NO2 and H substitutions in Rl and R2 positions, respectively, produce the weakest S-H...S hydrogen bridges. The excited-state properties of intramolecular hydrogen bonding in substituted systems have been investigated theoretically using the time-dependent DFT method. Natural bond orbital analysis is also performed for a better understanding of the nature of intramolecular interactions. The electron density and Laplacian (V~2p) properties, estimated by atoms in molecule calculations, indicate that the H...S bond possesses low p, positive ▽~2p and H_C < 0, which are in agreement with the partially covalent character ofHBs.
机译:R1的1,1,1-三氟-4-巯基丁-3-烯-2-硫酮及其15个衍生物的氢键(HB)强度,几何优化,振动频率和几个公认的芳香指数通过密度泛函理论(DFT)方法研究了气相中的6-311 + + G **基和R2。所得结果表明,HB强度主要由取代基所引起的螯合环内部的共振变化决定。已考虑以下取代基:NO 2,SCF 3,Ph,PhOCH 3,SCOCH 3,CH 2 OCH 3和CH 2 OH。最强的S-H ... S HBs在两个位置上均属于PhOCH3取代的系统,而R1和R2位置上的NO2和H取代分别产生最弱的S-H ... S氢桥。理论上已使用时变DFT方法研究了取代体系中分子内氢键的激发态性质。还进行了自然键轨道分析,以更好地了解分子内相互作用的性质。通过分子计算中的原子估计的电子密度和拉普拉斯(V〜2p)性质表明,H ... S键具有低p,介电常数▽〜2p和H_C <0,这与部分共价特征一致HBs。

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