Owczarek Emilia, Kwiatkowski Wojciech, Lemieszewski Michał, Mazur Adam, Rostkowski Michał, Paneth Piotr
Department of Chemistry, Technical University of Lodz, Zeromskiego 116, 90-924 Lodz, Poland.
J Org Chem. 2003 Oct 17;68(21):8232-5. doi: 10.1021/jo034799j.
Nitrogen, deuterium, halogen, and carbon kinetic isotope effects have been modeled for the Menshutkin reaction between methyl halides and substituted N,N-dimethylaniline at the HF/6-31G(d) level of theory augmented by the C-PCM continuum solvent model for several solvents. Systematic changes in geometries of the transition states and Gibbs free energies of activation have been found with phenyl ring substituents, solvent, and the leaving group. Kinetic isotope effects also change systematically; however, these changes are predicted to be small, inside the usual precision of the experimental measurements. On the contrary, no correlation has been found between the kinetic isotope effects and the Hammett constants for para substituents. Thus opposite to previous assumptions, our results indicate that kinetic isotope effects on the Menshutkin reaction cannot be used to predict the position of the transition state on the reaction coordinate.
在HF/6 - 31G(d)理论水平下,采用C - PCM连续介质溶剂模型对几种溶剂中卤代甲烷与取代N,N - 二甲基苯胺之间的门舒特金反应进行了氮、氘、卤素和碳动力学同位素效应的模拟。研究发现,随着苯环取代基、溶剂和离去基团的变化,过渡态几何结构和活化吉布斯自由能会发生系统性变化。动力学同位素效应也会系统性地改变;然而,预计这些变化很小,在实验测量的通常精度范围内。相反,动力学同位素效应与对位取代基的哈米特常数之间未发现相关性。因此,与先前的假设相反,我们的结果表明,门舒特金反应的动力学同位素效应不能用于预测反应坐标上过渡态的位置。