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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 >Theoretical study of reaction mechanism and regioselectivity of spiro-isoxazoline derivatives synthesized by intermolecular 1,3-dipolar cycloaddition
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Theoretical study of reaction mechanism and regioselectivity of spiro-isoxazoline derivatives synthesized by intermolecular 1,3-dipolar cycloaddition

机译:分子间1,3-偶极环加成反应合成螺-异恶唑啉衍生物的反应机理及区域选择性的理论研究

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The reaction mechanism and regioselectivity of spiro-isoxazoline derivatives synthesized by an intermolecular 1,3-dipolar cycloaddition reaction between 2,6-dichlorobenzonitrile oxide and 3-(4-chlorobenzylidene)dihydrofuran-2-one were studied using density functional theory and ab initio theory. Two possible reaction channels, which are related to the formation of isoxazoline-5-spiro-cyclic (Channel 1) and isoxazoline-4-spiro-cyclic (Channel 2) are investigated using natural bond orbital analysis, geometrical parameters analysis, energy analysis and frontier molecular orbital (FMO) analysis. The energy analysis shows that both the activation energy and reaction energy for Channel 2 are higher than those for Channel 1. The larger activation energy prevents the formation of isoxazoline-4-spiro-cyclic. Therefore, isoxazoline-5-spiro-cyclic is formed as the energetically favored product. The FMO analysis shows that the regioselectivity of this reaction is controlled by the LUMO_(dipole)–HOMO_(dipolarophile) interaction, and the reaction proceeds via Channel 1 which agrees with the experimental results. The natural bond order analysis shows the reaction follows a concerted mechanism with two bonds formed at about the same time.
机译:利用密度泛函理论和从头算方法研究了2,6-二氯苄腈与3-(4-氯亚苄基)二氢呋喃-2-酮的分子间1,3-偶极环加成反应合成的螺-异恶唑啉衍生物的反应机理和区域选择性。理论。使用自然键轨道分析,几何参数分析,能量分析和自然化学方法研究了与异恶唑啉-5-螺环(通道1)和异恶唑啉-4-螺环(通道2)的形成有关的两个可能的反应通道。前沿分子轨道(FMO)分析。能量分析表明,通道2的活化能和反应能均高于通道1的活化能和反应能。较大的活化能可防止异恶唑啉-4-螺环的形成。因此,形成异恶唑啉-5-螺环作为能量上有利的产物。 FMO分析表明,该反应的区域选择性受LUMO_(偶极)-HOMO_(偶极亲子)相互作用的控制,反应通过通道1进行,与实验结果相符。自然键序分析显示反应遵循协同机制,大约同时形成两个键。

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