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一些4'-取代-2-乙硫基苯乙酸酯的构象分析和电子相互作用

Conformational Analysis and Electronic Interactions of Some 4'-Substituted-2-ethylthio-phenylacetates.

作者信息

Rodrigues Daniel N S, Ducati Lucas C, Olivato Paulo R, Dal Colle Maurizio

机构信息

†Institute of Chemistry, University of São Paulo-USP, P.O. Box 26077, 05513-970, São Paulo, São Paulo, Brazil.

‡Dipartimento di Scienze Chimiche e Farmaceutiche, Università di Ferrara, 44121, Ferrara, Italy.

出版信息

J Phys Chem A. 2015 Apr 23;119(16):3823-32. doi: 10.1021/acs.jpca.5b01531. Epub 2015 Apr 13.

Abstract

The conformational analysis of various 4'-substituted-2-ethylthio-phenylacetate compounds bearing the substituents NO2 (1), Cl (2), H (3), Me (4), and OMe (5) was performed using infrared (IR) spectroscopic analysis of the carbonyl stretching band (νCO) supported by B3LYP/6-31G(d,p), NBO, QTAIM, and SM5.42R calculations for compounds 1, 3, and 5. The IR spectra in n-hexane indicate the presence of three components, whose intensities decrease upon increasing frequency. In solvents with high permittivity, while the low intensity component at higher frequency disappears, the relative intensity of the component at the intermediate frequency changes with respect to the lower frequency component with differing trends for the various derivatives. It can be observed that the intensity does not vary for compounds 1 and 2, which bear an electron-withdrawing substituent at 4', while it increases in intensity for compounds 3-5. The computational results predict the presence of three gauche conformers, defined by the orientation of the C-S bond with respect to the carbonyl group, whose intensities and νCO frequencies are in agreement with the experimental results. In solvents with increasing permittivity, the SM5.42R solvation model results reproduce the experimental trend observed for the two components in the low frequency region, while it overestimates the amount of the higher frequency conformer. NBO analysis suggests that all the conformers are stabilized to the same extent in the gauche conformation via σC-S → πCO and πCO → σC-S orbital interactions. The different stability can be attributed to the geometrical arrangement of the C(O)-CH2-S-CH2-CH3 moiety, which assumes a six-membered chair-like geometry in the g1 conformer, a six-membered twisted-chair-like geometry in the g2 conformer, and a seven-membered chair-like ring in the g3 conformer. Quantum theory of atoms in molecules (QTAIM) indicates that the ring geometries were formed and stabilized from short contacts between the oppositely charged carbonyl oxygen and the methylene/methyl hydrogen atoms, which interact through unusual intramolecular electrostatic hydrogen bonding that satisfies the Popelier criteria.

摘要

对带有取代基NO2(1)、Cl(2)、H(3)、Me(4)和OMe(5)的各种4'-取代-2-乙硫基苯乙酸酯化合物进行了构象分析,采用红外(IR)光谱对羰基伸缩带(νCO)进行分析,并辅以对化合物1、3和5的B3LYP/6-31G(d,p)、NBO、QTAIM和SM5.42R计算。正己烷中的红外光谱表明存在三种组分,其强度随频率增加而降低。在高介电常数的溶剂中,高频处的低强度组分消失,而中频处组分的相对强度相对于低频处组分发生变化,不同衍生物呈现不同趋势。可以观察到,在4'位带有吸电子取代基的化合物l和2的强度没有变化,而化合物3-5的强度增加。计算结果预测存在三种gauche构象异构体,由C-S键相对于羰基的取向定义,其强度和νCO频率与实验结果一致。在介电常数增加的溶剂中,SM5.42R溶剂化模型结果重现了低频区域中两个组分观察到的实验趋势,但高估了高频构象异构体的量。NBO分析表明,所有构象异构体在gauche构象中通过σC-S→πCO和πCO→σC-S轨道相互作用在相同程度上得到稳定。不同的稳定性可归因于C(O)-CH2-S-CH2-CH3部分的几何排列,其在g1构象异构体中呈现六元椅状几何结构,在g2构象异构体中呈现六元扭曲椅状几何结构,在g3构象异构体中呈现七元椅状环。分子中原子的量子理论(QTAIM)表明,环几何结构是由带相反电荷的羰基氧与亚甲基/甲基氢原子之间的短接触形成并稳定的,它们通过满足Popelier标准的异常分子内静电氢键相互作用。

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