首页> 外文期刊>Journal of the American Chemical Society >INTRAMOLECULAR H ATOM TRANSFER REACTIONS IN ALKYL RADICALS AND THE RING STRAIN ENERGY IN THE TRANSITION STRUCTURE
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INTRAMOLECULAR H ATOM TRANSFER REACTIONS IN ALKYL RADICALS AND THE RING STRAIN ENERGY IN THE TRANSITION STRUCTURE

机译:过渡结构中烷基自由基的分子内氢原子转移反应和环应变能

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摘要

Ab initio calculations were performed on prototypical intramolecular H atom transfer reactions in alkyl radicals, namely, the identity reactions of 1,2-, 1,3-, 1,4-, and 1,5 intramolecular isomerizations in the ethyl, 1-propyl, 1-butyl, and 1-pentyl radicals, respectively. The equilibrium geometries and the transition structures have been optimized at the UHF/6-31G* and/or UMP2/6-311G** levels. The activation energies at 0 K were calculated with the MP-SAC2 and BAC-MP4 methods. The computed barrier heights (41.1, 41.6, 24.6, 17.2 kcal mol(-1) at the MP-SAC2 and 43.1, 41.0, 25.1, and 18.8 kcal mol(-1) at the BAC-MP4 level of theory) follow the trend expected and are in reasonable agreement with experimental data on related reactions. The differences between the ab initio barrier heights of alkyl isomerizations and that of the corresponding bimolecular reaction are in good agreement with the strain energies of the corresponding cycloalkanes.
机译:从头算是对烷基中的典型分子内H原子转移反应进行的,即在乙基,1-丙基中1,2,3,1,3-,1,4-和1,5分子内异构化的身份反应,1-丁基和1-戊基。平衡几何形状和过渡结构已在UHF / 6-31G *和/或UMP2 / 6-311G **级别进行了优化。用MP-SAC2和BAC-MP4方法计算了0 K时的活化能。计算得出的势垒高度(在MP-SAC2处为41.1、41.6、24.6、17.2 kcal mol(-1)和在BAC-MP4理论水平下为43.1、41.0、25.1和18.8 kcal mol(-1)遵循趋势预期并且与有关反应的实验数据合理地吻合。烷基异构化的从头算势垒高度与相应的双分子反应的从头势垒高度之间的差异与相应的环烷烃的应变能高度吻合。

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