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Substituent effects in the Baeyer-Villiger reaction of acetophenones: a theoretical study

机译:苯乙酮的拜耳-维利格反应中的取代基作用:理论研究

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This paper reports the first complete theoretical study of substituent effects on the mechanism of the Baeyer-Villiger (BV) reaction in non-polar solvents taking into account the lowest-energy mechanism that has been proposed for this rearrangement which is non-ionic and fully concerted. The BV reaction of p-substituted acetophenones, p-XC6H4COCH3 (X = NO2, CN, H, CH3, OCH3), with performic (PFA) and trifluoroperacetic (TFPAA) acids, catalyzed by formic (FA) and trifluoroacetic (TFAA) acids, respectively, using the MPWB1K functional and the 6-311G(d,p) and 6-311++G(d,p) basis sets, are studied. Solvent effects are taken into account by means of the PCM continuum model using dichloromethane as solvent. Electron-donating substituents on the aryl group have a relatively small activation effect on the first step, but a pronounced activation effect on the second to the point of being able to change the rate-determining step (RDS) of the reaction, as observed in the case of p-methoxyacetophenone with TFPAA acids. After analyzing the changes in Gibbs free energy of activation, geometrical parameters, and charge distributions of the transition states (TSs), explanations are provided for the two distinct effects that substituents on the ketone have on the kinetics of the addition and migration steps of the BV oxidation. The effect of the acid/peracid pair used is also discussed.
机译:本文报告了关于非极性溶剂中Baeyer-Villiger(BV)反应机理的取代基效应的第一个完整理论研究,同时考虑了针对这种重排所建议的最低能量机理,即非离子且完全齐心协力。对取代苯乙酮p-XC6H4COCH3(X = NO2,CN,H,CH3,OCH3)与甲酸(PFA)和三氟过氧乙酸(TFPAA)的BV反应由甲酸(FA)和三氟乙酸(TFAA)催化分别使用MPWB1K函数和6-311G(d,p)和6-311 ++ G(d,p)基集进行了研究。通过使用二氯甲烷作为溶剂的PCM连续模型来考虑溶剂效果。芳基上的给电子取代基在第一步中具有相对较小的活化作用,但在第二步中具有显着的活化作用,以至于能够改变反应的速率决定步骤(RDS),对甲氧基苯乙酮与TFPAA酸的情况。在分析了吉布斯活化能,过渡参数(TSs)的几何参数和电荷分布的变化后,对酮上取代基对加成和迁移步骤动力学的两种不同影响进行了解释。 BV氧化。还讨论了所用酸/过酸对的作用。

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