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首页> 外文期刊>Journal of Physical Organic Chemistry >Theoretical study of keto-enol tautomerism by quantum mechanical calculations (the QM/MC/ FEP method)
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Theoretical study of keto-enol tautomerism by quantum mechanical calculations (the QM/MC/ FEP method)

机译:量子力学计算(QM / MC / FEP方法)对酮-烯醇互变异构的理论研究

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In this study, the tautomeric equilibrium between the keto and enol forms has been studied for five typical ketones and aldehydes: i-butanal, acetaldehyde, acetone, acetylacetone, and dimedone. The level of theory used in the gas-phase calculation was Becke, three-parameter, Lee-Yang-Parr/6-311 G(d,p)//Becke, three-parameter, Lee-Yang-Parr/ 6-31 G(d). The free energies of solvation were included in the calculation by using the free-energy perturbation method based on Monte Carlo simulation, that is, the quantum mechanical/Monte Carlo/free-energy perturbation method. Three different models, incorporating no-water, one-water, and two-waters, were adopted. The results showed that in the gas phase the addition of water molecules to the reaction mechanism caused the activation barriers to decrease by half relative to the water-free mechanism, but there was no effect on the relative difference in free energy, AG_(gas). The solvation effects (?G_(sol)), based on quantum mechanical/Monte Carlo/free-energy perturbation calculations, were added to those of the gas-phase results of the one-water and two-waters models. The two-waters model produced values that were very consistent with the experimental data for all of the tautomers. The differences in the relative Gibbs free energy (?G_(rxn))were less than 1.0 kcalmol~(-1). In summary, the inclusion of solvent molecules in gas-phase calculations plays a very important role in producing results consistent with experimental data.
机译:在这项研究中,已经研究了酮和烯醇形式之间的互变异构平衡,涉及五个典型的酮和醛:异丁醛,乙醛,丙酮,乙酰丙酮和二甲基酮。气相计算中使用的理论水平为Becke,三参数,Lee-Yang-Parr / 6-311 G(d,p)// Becke,三参数,Lee-Yang-Parr / 6-31 G(d)。通过基于蒙特卡洛模拟的自由能微扰方法,即量子力学/蒙特卡罗/自由能微扰方法,将溶剂化的自由能包括在计算中。采用了三种不同的模型,包括无水,一水和两水。结果表明,在气相中,向反应机理中添加水分子使活化能垒相对于无水机理而言降低了一半,但对自由能AG_(gas)的相对差异没有影响。 。将基于量子力学/蒙特卡罗/自由能扰动计算的溶剂化效应(ΔG_(sol))添加到一水和两水模型的气相结果中。两水模型产生的值与所有互变异构体的实验数据非常一致。相对吉布斯自由能(ΔG_(rxn))的差异小于1.0 kcalmol〜(-1)。总之,气相计算中包含溶剂分子在产生与实验一致的结果中起着非常重要的作用。数据。

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