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Molecular structures of cis- and trans-S-Ethyl thiocrotonate. A combined vibrational spectroscopic and ab initio SCF-MO study

机译:顺式-和-S-硫代巴豆酸乙酯的分子结构。振动光谱和从头算起SCF-MO的组合研究

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摘要

Ab initio 6-31G* SCF-MO calculations have been carried out for cis- and trans-S-ethyl thiocrotonate [cis- and trans- CH3—CHCH—C(O)SCH2CH3]. Fully optimized geometries, relative stabilities, dipole moments and harmonic force fields for several conformers of these molecules have been determined and the results compared with those of similar molecules. Combined with FTIR spectroscopic data, the theoretical results demonstrate that trans-S-ethyl thiocrotonate exists in two different confromations about the Cα–C bond (the s-cis and s-trans forms, with CC–CO dihedral angles equal to 0° and 180°, respectively), the s-cis conformation being more stable than the s-trans form by ca. 7 kJ mol–1 for the isolated molecule situation, while the cis-s-ethyl thiocrotonate molecule adopts only the s-cis conformation about this bond. A comparison of the experimental and theoretical vibrational spectra also shows that the existence of the less stable s-trans isomer of an α,β-unsaturated thioester can be successfully monitored by the IR band at ca. 1165 cm–1, ascribed to the Cα–C stretching mode of this form. Additional conformationally sensitive bands are also identified, but these are difficult to use in the IR spectrum because of overlap with other features.
机译:对于顺式和反式-S-乙基硫代巴豆酸酯[顺式和反式CH3-CHCH-C(O)SCH2CH3],从头计算了6-31G * SCF-MO。已经确定了这些分子几个构象的完全优化的几何形状,相对稳定性,偶极矩和谐波力场,并将结果与​​相似分子进行了比较。结合FTIR光谱数据,理论结果表明,反式-S-硫代巴豆酸乙酯以两种不同的方式存在于Cα-C键(s-顺式和s-反式,CC-CO二面角等于0°和分别为180°),s-顺式构象比s-trans构型稳定约ca。对于分离的分子情况为7 kJ mol-1,而顺式-s-乙基硫代巴豆酸酯分子仅采用关于该键的s-顺式构象。实验和理论振动光谱的比较还表明,α,β-不饱和硫代酯的稳定性较差的s-反式异构体的存在可以通过在约10nm处的IR带成功地监测。 1165 cm–1,归因于这种形式的Cα–C拉伸模式。还确定了其他构象敏感带,但由于与其他特征重叠,因此难以在红外光谱中使用。

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