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模型识别SN2反应CH3X + X-(X = F、Cl、CN、OH、SH、NH2、PH2):马库斯理论分析

Model identity SN2 reactions CH3X + X- (X = F, Cl, CN, OH, SH, NH2, PH2): Marcus theory analyzed.

作者信息

Gonzales Jason M, Allen Wesley D, Schaefer Henry F

机构信息

Center for Computational Chemistry, University of Georgia, Athens, GA 30602-2525, USA.

出版信息

J Phys Chem A. 2005 Nov 24;109(46):10613-28. doi: 10.1021/jp054734f.

Abstract

The structures of seven gas phase identity S(N)2 reactions of the form CH(3)X + X(-) have been characterized with seven distinct theoretical methods: RHF, B3LYP, BLYP, BP86, MP2, CCSD, and CCSD(T), in conjunction with basis sets of double and triple zeta quality. Additionally, the energetics of said reactions have been definitively computed using focal point analyses utilizing extrapolation to the one-particle limit for the Hartree-Fock and MP2 energies using basis sets of up to aug-cc-pV5Z quality, inclusion of higher order correlation effects [CCSD and CCSD(T)] with basis sets of aug-cc-pVTZ quality, and additional auxiliary terms for core correlation and scalar relativistic effects. Final net activation barriers for the reactions are E(b)(F,F)= -0.8, E(b)(Cl,Cl)= 1.6, E(b)(CN,CN)= 28.7, E(b)(OH,OH)= 14.3, E(b)(SH,SH)= 13.8, E(b)(NH2,NH2)= 28.6, and E(b)(PH2,PH2)= 25.7 kcal mol(-1). General trends in the energetics, specifically the performance of the density functionals, and the component energies of the focal point analyses are discussed. The utility of classic Marcus theory as a technique for barrier predictions has been carefully analyzed. The standard Marcus theory results show disparities of up to 9 kcal mol(-1) with respect to explicitly computed results. However, when alternative approaches to Marcus theory, independent of the well-depths, are considered, excellent performance is achieved, with the largest deviations being under 3 kcal mol(-1).

摘要

已使用七种不同的理论方法对七种具有CH(3)X + X(-)形式的气相同一性S(N)2反应的结构进行了表征:RHF、B3LYP、BLYP、BP86、MP2、CCSD和CCSD(T),并结合了双ζ和三ζ质量的基组。此外,通过焦点分析确定地计算了上述反应的能量学,使用高达aug-cc-pV5Z质量的基组对Hartree-Fock和MP2能量外推到单粒子极限,使用aug-cc-pVTZ质量的基组包含高阶相关效应[CCSD和CCSD(T)],以及用于核心相关和标量相对论效应的附加辅助项。反应的最终净活化能垒为E(b)(F,F)= -0.8,E(b)(Cl,Cl)= 1.6,E(b)(CN,CN)= 28.7,E(b)(OH,OH)= 14.3,E(b)(SH,SH)= 13.8,E(b)(NH2,NH2)= 28.6,和E(b)(PH2,PH2)= 25.7 kcal mol(-1)。讨论了能量学的一般趋势,特别是密度泛函的性能,以及焦点分析的组成能量。仔细分析了经典Marcus理论作为势垒预测技术的效用。标准Marcus理论结果与明确计算结果相比显示出高达9 kcal mol(-1)的差异。然而,当考虑与阱深无关的Marcus理论替代方法时,可实现出色的性能,最大偏差在3 kcal mol(-1)以下。

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