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A THEORETICAL STUDY OF ADDITION OF ORGANOMAGNESIUM REAGENTS TO CHIRAL ALPHA-ALKOXY CARBONYL COMPOUNDS

机译:有机镁试剂加入手性α-烷氧基羰基化合物的理论研究

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A theoretical study on the addition of organomagnesium reagents (CH3Mg+, CH3MgCl, 2CH(3)MgCl) to the carbonyl group of chiral alpha-alkoxy carbonyl compounds (2-hydroxypropanal, 3-hydroxybutanone, and 3,4-di-O-methyl-1-O-(trimethylsilyl)-L-erythrulose) has been carried out. Analytical gradients SCF MO and second derivatives at the PM3 semiempirical procedure and the ab initio method at the HF/3-21G basis set level have been applied to identify the stationary points on potential energy surfaces. The geometry, harmonic vibrational frequencies, transition vector, and electronic structure of the transition structures have been obtained. The dependence of the results obtained upon the computing method and the model system is analyzed, discussed, and compared with available experimental data. The first step corresponds to the exothermic formation of a chelate complex without energy barrier. This stationary point corresponds to a puckered five-membered ring, determining the stereochemistry of the global process, which is retained throughout the reaction pathway. The second and rate-limiting step is associated to the C-C bond formation via 1,3-migration of the nucleophilic methyl group from the organomagnesium compound to the carbonyl carbon. For an intramolecular mechanism (addition of CH3Mg+ and CH3MgCl to different carbonyl. compounds) the transition structure can be described as a four-membered ring. The inclusion of a second equivalent of CH3MgCl, corresponding to an intermolecular mechanism, decreases the barrier height, and the process can be considered as an assisted intermolecular mechanism: the first equivalent forms the chelate structure and the second CH3MgCl carries out the nucleophilic addition to the carbonyl group. The most favorable pathway corresponds to an intermolecular mechanism via an anti attack. The analysis of the results reveals that the nature of transition structures for the intramolecular and intermolecular;mechanisms is a rather robust entity. There is a minimal molecular model with a transition structure which describes the essentials of the chemical addition process, and the corresponding transition vector is an invariant feature. [References: 75]
机译:将有机镁试剂(CH3Mg +,CH3MgCl,2CH(3)MgCl)添加到手性α-烷氧基羰基化合物(2-羟基丙醛,3-羟基丁酮和3,4-二-O-甲基)的羰基上的理论研究进行了-1-O-(三甲基甲硅烷基)-L-赤藓糖。已应用PM3半经验过程中的分析梯度SCF MO和二阶导数以及HF / 3-21G基集水平的从头算方法来识别势能表面上的固定点。已经获得了过渡结构的几何形状,谐波振动频率,过渡矢量和电子结构。分析,讨论了所得结果对计算方法和模型系统的依赖性,并将其与可用的实验数据进行了比较。第一步对应于无能垒的螯合物的放热形成。该固定点对应于起皱的五元环,确定了全局过程的立体化学,该化学过程保留在整个反应路径中。第二个限速步骤是通过亲核甲基从有机镁化合物向羰基碳的1,3-迁移与C-C键形成相关的。对于分子内机理(将CH3Mg +和CH3MgCl加到不同的羰基化合物中),过渡结构可描述为四元环。包含第二当量的CH3MgCl,相当于分子间机理,降低了势垒高度,该过程可以被视为辅助的分子间机理:第一当量形成螯合物结构,第二CH3MgCl对C3MgCl进行亲核加成。羰基。最有利的途径对应于通过反攻的分子间机制。对结果的分析表明,分子内和分子间机制的过渡结构的性质是相当可靠的实体。有一个具有过渡结构的最小分子模型,该模型描述了化学加成过程的基本要素,并且相应的过渡矢量是不变的特征。 [参考:75]

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