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Insights into the reaction mechanism between propadienylidene and ethylene: A DFT study

机译:深入了解丙二烯与乙烯之间的反应机理:DFT研究

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The reaction mechanism between propadienylidene and ethylene has been systematically investigated employing the B3LYP/6-311 G~(**) and MP2/cc-pVTZ levels of theory to better understand the reactivity of propadienylidene with unsaturated hydrocarbons. Geometry optimization, vibrational analysis, and energy property for the involved stationary points on the potential energy surface have been calculated. Two important initial reaction complexes characterized by three- and four-membered ring structures have been located firstly. After that, three different products possessing three-, four-, and five-membered ring characters have been obtained through three reaction pathways. In the first reaction pathway, a threemembered ring alkyne compound has been obtained. As for the second reaction pathway, it is a diffusion-controlled reaction, resulting in the formation of the four-membered ring conjugated diene compound. A five-membered conjugated diene compound has been obtained in the third reaction pathway, which is the most stable product in the available products thermodynamically. On the other hand, the second reaction pathway is the most favorable reaction to proceed kinetically.
机译:利用B3LYP / 6-311 G〜(**)和MP2 / cc-pVTZ的理论水平系统地研究了丙烯二烯与乙烯的反应机理,以更好地理解丙烯二烯与不饱和烃的反应性。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。首先确定了以三元和四元环结构为特征的两个重要的初始反应配合物。之后,通过三种反应途径获得了具有三元,四元和五元环特征的三种不同产物。在第一反应途径中,获得了三元环炔烃化合物。至于第二反应途径,它是扩散控制的反应,导致形成四元环共轭二烯化合物。在第三反应路径中获得了五元共轭二烯化合物,这是热力学上可用产物中最稳定的产物。另一方面,第二反应途径是在动力学上进行的最有利的反应。

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