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首页> 外文期刊>The Journal of Organic Chemistry >A Molecular Electron Density Theory Study of the Role of the Copper Metalation of Azomethine Ylides in [3+2] Cycloaddition Reactions
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A Molecular Electron Density Theory Study of the Role of the Copper Metalation of Azomethine Ylides in [3+2] Cycloaddition Reactions

机译:分子电子密度理论研究氮杂甲胺杯铜金属化在[3 + 2]环加成反应中的作用

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摘要

The copper metalation of azomethine ylides (AYs) in [3 + 2] cycloaddition (32CA) reactions with electron deficient ethylenes has been studied within the Molecular Electron Density Theory (MEDT) at the MPVVB1K/6-311G(d,p) level, in order to shed light on the electronic effect of the metalation in the course of the reaction. Analysis of the Conceptual Density Functional Theory reactivity indices indicates that the metalation of AYs markedly enhances the nucleophilicity of these species given the anionic character of the AY framework. These 32CA reactions take place through stepwise mechanisms characterized by the formation of a molecular complex. Both nonmetalated and metalated 32CA reactions present similar activation energies. While metalated 32CA reactions are completely regioselective, their stereoselectivity depends on the bulk of the ligand as well as the nature of the ethylene derivative. The metalation of the AY slightly increases the asynchronicity of the C-C single bond formation. Electron Localization Function topological analysis of the C-C bond formation processes makes it possible to characterize the mechanism of these 32CA reactions as a two-stage one-step mechanism. The present MEDT study rules out any catalytic role of the Cu(I) cation in the kinetics of the 32CA reactions of metalated AYs.
机译:在MPVVB1K / 6-311G(D,P)水平的分子电子密度理论(MEDT)内研究了用电子缺陷乙烯的[3 + 2]环加成(32Ca)反应中的氮杂甲酸钠(32Ca)反应的铜金属化物质,为了在反应过程中阐明金属化的电子效果。概念密度函数理论的分析反应性指数表明,鉴于熔接框架的阴离子特征,透过的金属化显着提高了这些物种的亲核性。这些32CA反应通过以分子复合物形成的逐步机制进行。非常规和金属化的32CA反应都存在类似的活化能量。虽然金属化的32CA反应是完全区域选择性的,但它们的立体选择性取决于配体的大部分以及乙烯衍生物的性质。拍摄的金属化略微增加了C-C单键形成的异步性。 C-C键形成方法的电子定位功能拓扑分析使得可以表征这些32CA反应的机制作为两级的一步机制。目前的Medt研究规定了Cu(I)阳离子在金属化Ays的32CA反应的动力学中的任何催化作用。

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