首页> 外文期刊>Bulletin of the Korean Chemical Society >Theoretical Study on the Reaction Mechanism of Azacyclopropenylidene with Epoxypropane: An Insertion Process
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Theoretical Study on the Reaction Mechanism of Azacyclopropenylidene with Epoxypropane: An Insertion Process

机译:氮杂环丙烯与环氧丙烷反应机理的理论研究:插入过程

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摘要

The reaction mechanism between azacyclopropenylidene and epoxypropane has been systematically investigated employing the second-order Moller-Plesset perturbation theory (MP2) method to better understand the reactivity of azacyclopropenylidene with four-membered ring compound epoxypropane. Geometry optimization, vibrational analysis, and energy property for the involved stationary points on the potential energy surface have been calculated. It was found that for the first step of this reaction, azacyclopropenylidene can insert into epoxypropane at its C-0 or C-C bond to form spiro intermediate M. It is easier for the azacyclopropenylidene to insert into the C-O bond than the C-C bond. Through the ring-opened step at the C-C bond of azacyclopropenylidene fragment, IM can transfer to product PI, which is named as pathway (1). On the other hand, through the H-transferred step and subsequent ring-opened step at the C-N bond of azacyclopropenylidene fragment, IM can convert to product P2, which is named as pathway (2). From the thermodynamics viewpoint, the P2 characterized by an allene is the dominating product. From the kinetic viewpoint, the pathway (1) of formation to PI is primary.
机译:已利用二阶Moller-Plesset微扰理论(MP2)方法系统地研究了氮杂环丙烯与环氧丙烷之间的反应机理,以更好地理解氮杂环丙烯与四元环化合物环氧丙烷的反应性。计算了势能表面上涉及的固定点的几何优化,振动分析和能量特性。已发现对于该反应的第一步,氮杂环丙烯基可以在其C-0或C-C键处插入环氧丙烷以形成螺环中间体M.氮杂环丙烯基比C-C键更容易插入C-O键中。通过在氮杂环丙烯基片段的C-C键处的开环步骤,IM可以转移至产物PI,其被称为途径(1)。另一方面,通过在氮杂亚环丙烯基片段的C-N键处的H转移步骤和随后的开环步骤,IM可以转化为产物P2,其被命名为途径(2)。从热力学观点来看,以丙二烯为特征的P2是主要产物。从动力学角度来看,形成PI的途径(1)是主要的。

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