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从烷基到酰基自由基的一些卤素原子转移反应的从头算和密度泛函理论研究。

An ab initio and DFT study of some halogen atom transfer reactions from alkyl groups to acyl radical.

作者信息

Matsubara Hiroshi, Ryu Ilhyong, Schiesser Carl H

机构信息

Department of Chemistry, Graduate School of Science, Osaka Prefecture University, Sakai, Osaka 599-8531, Japan.

出版信息

Org Biomol Chem. 2007 Oct 21;5(20):3320-4. doi: 10.1039/b710449a. Epub 2007 Sep 5.

Abstract

Ab initio calculations using the 6-311G**, cc-pVDZ, and (valence) double-zeta pseudopotential (DZP) basis sets, with (MP2, QCISD, CCSD(T)) and without (HF) the inclusion of electron correlation, and density functional (BHandHLYP, B3LYP) calculations predict that the transition states for the reaction of acetyl radical with several alkyl halides adopt an almost collinear arrangement of attacking and leaving radicals at the halogen atom. Energy barriers (DeltaE(double dagger)) for these halogen transfer reactions of between 89.2 (chlorine transfer from methyl group) and 25.3 kJ mol(-1) (iodine transfer from tert-butyl group) are calculated at the BHandHLYP/DZP level of theory. While the difference in forward and reverse energy barriers for iodine transfer to acetyl radical is predicted to be 15.1 kJ mol(-1) for primary alkyl iodide, these values are calculated to be 6.7 and -4.2 kJ mol(-1) for secondary and tertiary alkyl iodide respectively. These data are in good agreement with available experimental data in that atom transfer radical carbonylation reactions are sluggish with primary alkyl iodides, but proceed smoothly with secondary and tertiary alkyl iodides. These calculations also predict that bromine transfer reactions involving acyl radical are also feasible at moderately high temperature.

摘要

使用6 - 311G**、cc - pVDZ和(价)双ζ赝势(DZP)基组,采用(MP2、QCISD、CCSD(T))方法并包含电子相关作用以及采用(HF)方法不包含电子相关作用进行的从头算计算,还有密度泛函(BHandHLYP、B3LYP)计算预测,乙酰基自由基与几种卤代烃反应的过渡态在卤素原子处采取进攻和离去自由基几乎共线的排列方式。在BHandHLYP/DZP理论水平下计算出这些卤素转移反应的能垒(ΔE‡)在89.2(甲基的氯转移)至25.3 kJ mol⁻¹(叔丁基的碘转移)之间。虽然预测一级烷基碘向乙酰基自由基转移碘的正向和反向能垒之差为15.1 kJ mol⁻¹,但对于二级和三级烷基碘,这些值分别计算为6.7和 -4.2 kJ mol⁻¹。这些数据与现有实验数据高度吻合,即原子转移自由基羰基化反应对于一级烷基碘反应缓慢,但对于二级和三级烷基碘则顺利进行。这些计算还预测,涉及酰基自由基的溴转移反应在适度高温下也是可行的。

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