首页> 外文期刊>Журнал физической химии >THEORETICAL STUDY OF MECHANISM OF CYCLOADDITION REACTION BETWEEN SINGLET DICHLORO-SILYLENE CARBENE(Cl_2Si=C:) AND FORMALDEHYDE
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THEORETICAL STUDY OF MECHANISM OF CYCLOADDITION REACTION BETWEEN SINGLET DICHLORO-SILYLENE CARBENE(Cl_2Si=C:) AND FORMALDEHYDE

机译:单体二氯硅烷碳(Cl_2Si = C :)与甲醛之间的重整反应机理的理论研究

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The mechanism of the cycloaddition reaction between singlet dichloro-silylene carbene(Cl_2Si=C:) and formaldehyde has been investigated with MP2/6-31 G~* method, including geometry optimization and vibrational analysis for the involved stationary points on the potential energy surface. The energies of the different conformations are calculated by Zero-point energy and CCSD (T)//MP2/6-31G~* method. From the potential energy profile, it can be predicted that the reaction has two competitive dominant reaction pathways. The first dominant reaction pathway consists of two steps: (1) the two reactants (R1, R2) firstly form a four-membered ring intermediate (INT4) through a barrier-free exothermic reaction of 387.9 kJ/mol; (2) intermediate (INT4) then isomerizes to H-transfer product (P4.2) via a transition state (TS4.2) with energy barrier of 4.7 kJ/mol. The second dominant reaction pathway as follows: on the basis of intermediate (INT4) created between R1 and R2, intermediate (INT4) further reacts with formaldehyde (R2) to form the intermediate (INT5) through a barrier-free exothermic reaction of 158.3 kJ/mol. Then, intermediate (INT5) isomerizes to a silicic bis-heterocyclic product (P5) via a transition state (TS5), for which the barrier is 40.1 kJ/mol.
机译:用MP2 / 6-31 G〜*方法研究了单线态二氯甲硅烷基卡宾(Cl_2Si = C :)与甲醛的环加成反应机理,包括几何优化和势能面上涉及的固定点的振动分析。 。通过零点能量和CCSD(T)// MP2 / 6-31G〜*方法计算不同构象的能量。根据势能曲线,可以预测该反应具有两个竞争性主导反应途径。第一主要反应路径包括两个步骤:(1)两种反应物(R1,R2)首先通过387.9 kJ / mol的无障碍放热反应形成四元环中间体(INT4); (2)中间体(INT4)然后通过能级为4.7 kJ / mol的过渡态(TS4.2)异构化为H-转移产物(P4.2)。第二个主要反应途径如下:在R1和R2之间生成的中间体(INT4)的基础上,中间体(INT4)通过158.3 kJ的无障碍放热反应进一步与甲醛(R2)反应形成中间体(INT5) /摩尔然后,中间体(INT5)通过过渡态(TS5)异构化为硅双杂环产物(P5),对于该态,势垒为40.1 kJ / mol。

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