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亚甲基硅烯与乙烯环加成反应机理的理论研究
引用本文:卢秀慧,于海彬,徐曰华,武卫荣.亚甲基硅烯与乙烯环加成反应机理的理论研究[J].中国化学,2006,24(3):307-310.
作者姓名:卢秀慧  于海彬  徐曰华  武卫荣
作者单位:School of Chemistry and Chemical Engineering, Jinan University, Jinan, Shandong 250022, China
基金项目:Project supported by the Natural Science Foundation of Shandong Province of China (No. Y2002B07).
摘    要:The mechanism of a cycloaddition reaction between singlet methylidenesilene and ethylene has been investigated with MP2/6-31G^* and B3LYP/6-31G^* methods, including geometry optimization and vibrational analysis for the involved stationary points on the potential energy surface. Energies of the involved conformers were calculated by CCSD(T)//MP2/6-31G* and CCSD(T)//B3LYP/6-31 G* methods, respectively. The results show that the dominant reaction pathway of the cycloaddition reaction is that a complex intermediate is firstly formed between the two reactants through a barrier-free exothermic reaction of 13.3 kJ/mol, and the complex is then isomefized to a four-membered ring product P2,1 via a transition state TS2.1 with a barrier of 32.0 kJ/mol.

关 键 词:甲基烯硅  乙烯  环加成反应  表面势能  密度函数理论
收稿时间:2004-12-09
修稿时间:2004-12-092005-11-04

Theoretical Study on the Mechanism of the Cycloaddition Reaction between Methylidenesilene and Ethylene
Lu XiuHui;Yu HaiBin;Xu YueHua;Wu WeiRong.Theoretical Study on the Mechanism of the Cycloaddition Reaction between Methylidenesilene and Ethylene[J].Chinese Journal of Chemistry,2006,24(3):307-310.
Authors:Lu XiuHui;Yu HaiBin;Xu YueHua;Wu WeiRong
Abstract:The mechanism of a cycloaddition reaction between singlet methylidenesilene and ethylene has been investigated with MP2/6‐31G?? and B3LYP/6‐31G?? methods, including geometry optimization and vibrational analysis for the involved stationary points on the potential energy surface. Energies of the involved conformers were calculated by CCSD(T)//MP2/6‐31G?? and CCSD(T)//B3LYP/6‐31G?? methods, respectively. The results show that the dominant reaction pathway of the cycloaddition reaction is that a complex intermediate is firstly formed between the two reactants through a barrier‐free exothermic reaction of 13.3 kJ/mol, and the complex is then isomerized to a four‐membered ring product P2.1 via a transition state TS2.1 with a barrier of 32.0 kJ/mol.
Keywords:methylidenesilene  cycloaddition reaction  potential energy surface  second-order Moller-Plesset perturbation and density functional theory
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