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CH2=CHCl与O(3P)反应的理论研究
引用本文:胡武洪,申伟.CH2=CHCl与O(3P)反应的理论研究[J].化学学报,2005,63(12):1042-1048,i001.
作者姓名:胡武洪  申伟
作者单位:涪陵师范学院化学系,重庆,涪陵,408003
基金项目:重庆市教委科学技术研究(No.031303)资助项目.
摘    要:用量子化学密度泛函理论和QCISD(Quadratic configuration interaction calculation)方法,对0(^3P)与CH2CHCl的反应进行了理论研究.在UB3LYP/6—311 G(d,p),UB3LYP/6—31 (3df,3pd)计算水平上,优化了反应物、产物、中间体和过渡态的几何构型,并在UQCISD(T)/6—311 G(2df,2pO)水平上计算了单点能量.为了确证过渡态的真实性,在UB3LYP/6—311 G(3df,3pd)水平上进行了内禀坐标(IRC)计算和频率分析,并确定了反应机理.研究结果表明,反应主要产物为CH2CHO和Cl.

关 键 词:理论研究  量子化学密度泛函理论  几何构型  频率分析  研究结果  反应机理  过渡态  水平  计算  反应物  中间体  真实性  产物  Cl

Theoretical Study on Reaction between O(3P) and CH2=CHCl
HU Wu-hong,SHEN Wei.Theoretical Study on Reaction between O(3P) and CH2=CHCl[J].Acta Chimica Sinica,2005,63(12):1042-1048,i001.
Authors:HU Wu-hong  SHEN Wei
Institution:HU,Wu-Hong* SHEN,Wei
Abstract:By means of the density functional theory and QCISD (Quadratic configuration interaction cal- culation) methods, the reaction between O(3P) and CH2=CHCl has been studied. The geometries for the re- actants, products, intermediates and transition states have been completely optimized at UB3LYP/6-311++ G(d,p), UB3LYP/6-311++G(3df,3pd) computational levels. All the transition states have been verified by the vibrational analysis and the internal reaction coordinate calculations. The mechanism of the reaction has been confirmed. In view of energies, the channel of forming the products CH2=CHO+Cl is more favorable than the other channels.
Keywords:CH2=CHCl  O(3P)  reaction mechanism  density functional theory
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