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首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Thermal reactions of 3-Furyl Fulgide and 3-Thienyl Fulgide. Ab initio molecular orbital and CASSCF studies
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Thermal reactions of 3-Furyl Fulgide and 3-Thienyl Fulgide. Ab initio molecular orbital and CASSCF studies

机译:3-Furyl Fulgide和3-Thienyl Fulgide的热反应。从头算分子轨道和CASSCF研究

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摘要

Thermal Reactions of 3-furyl fulgide and 3-thienyl fulgide were examined at ab initio molecular orbital and CASSCF levels. The transition states of EC and EZ-isomerizations were determined by singlet UHF method with 6-31G~* basis set, and their activation energies were successively estimated sat CASSCF level. The geometries of the transition states of EC-isomerizations of 3-furyl fulgide and 3-thienyl fulgide are closer to those of C-isomers than those of E-isomers. The EC-isomerization proceeds in a conrotatory mode rather than a disrotatory mode due to steric repulsion of methyl groups, in conflict with the Woodward-Hoffmann selection rule. The activation energies of EC-isomerizations were estimated to be 45 kcal/mol for 3-furyl fulgide and 46 kcal/mol for 3-thienyl fulgide at CASSCF(10,9) level. The activation energies of EZ-isomerizations are less by ~5 kcal/mol than those of EC-isomerizations, indicating that EZ-isomerizations are thermally preferred rather than EC-isomerizations. Those values are remarkably small compared with 65.6 kcal/mol for rotational barrier of double bond of ethylene molecule at CASSCF(2,2)/6-31G~* level. It is, however, shown that smallness of the activation energies of EZ-isomerizations is harmony with thermal examinations of 3-furyl fulgide and 3-thienyl fulgide at 140 ℃.
机译:在从头算的分子轨道和CASSCF水平检查了3-呋喃基呋喃酮和3-噻吩基呋喃化物的热反应。采用6-31G〜*基团的单重态UHF方法确定了EC和EZ异构化的过渡态,并依次估计了其活化能。 3-呋喃基夫啶和3-噻吩基夫啶的EC-异构化过渡态的几何形状比E-异构体更接近C-异构体。由于甲基的空间排斥,EC-异构化以旋转模式而不是旋转模式进行,这与伍德沃德-霍夫曼选择规则相冲突。 EC异构化的活化能在CASSCF(10,9)水平下估计为3-呋喃基呋喃酮为45 kcal / mol,3-噻吩基呋喃酮为46 kcal / mol。 EZ异构化的活化能比EC异构化的活化能低约5 kcal / mol,这表明EZ异构化在热学上是优选的,而不是EC异构化。与在CASSCF(2,2)/ 6-31G〜*水平下乙烯分子双键的旋转势垒相比,这些值与65.6 kcal / mol相比非常小。然而,结果表明,EZ-异构化反应的活化能的较小值与140℃下的3-呋喃基夫啶和3-噻吩基g夫啶的热学检验相吻合。

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