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On the outside looking in: rethinking the molecular mechanism of 1,3-dipolar cycloadditions from the perspective of bonding evolution theory. The reaction between cyclic nitrones and ethyl acrylate

机译:从外观看:从键合演化理论的角度重新思考1,3-偶极环加成的分子机理。环状硝酸酯与丙烯酸乙酯之间的反应

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摘要

In this work we report on the progress that has been made towards gaining an understanding of the molecular mechanism of 1,3-dipolar cycloadditions using the bonding evolution theory (BET). A detailed analysis of the flow of electron density along the reaction pathway of the formal 1,3-dipolar cycloaddition reaction between cyclic nitrones (pyrroline-1-oxide and 2,3,4,5-tetrahydropyridine-1-oxide) and ethyl acrylate, as a case study, allowed the nature of the molecular mechanisms to be characterized. The present study provides a deep insight into the reaction mechanism, based on the electron density rearrangements given by the structural stability domains, and their connection with the bond breaking/forming processes along the reaction pathway. The electron pushing formalism is a powerful tool to describe chemical reactivity. Here, we show how the Lewis structures can be recovered and how curly arrows describe electron density transfers in chemical reaction mechanisms based on the BET results. The reaction mechanism is described by four consecutive events taking place as the reaction progresses: (1) the population of the initial N–C double bond is transferred to the N and C atoms; (2) the population of the initial double C–C bond is transferred to the C atoms. Along the ortho pathway the next steps are: (3) the C–C bond-forming process, and (4) the O–C bond-forming process. The order of (3) and (4) is inverted in the meta channel. Based on the sequence of the structural stability domains along the intrinsic reaction coordinate, a new synchronicity index is proposed, allowing us to classify and quantify the (a)synchronicity of the 1,3-DC reactions and, therefore, the nature of the reaction mechanism.
机译:在这项工作中,我们报告了在使用键进化理论(BET)来理解1,3-偶极环加成的分子机理方面取得的进展。沿环硝酮(1-吡咯啉-1-氧化物和2,3,4,5-四氢吡啶-1-氧化物)与丙烯酸乙酯之间的正式1,3-偶极环加成反应的反应路径的电子密度流的详细分析作为案例研究,可以表征分子机制的性质。本研究基于结构稳定性域给出的电子密度重排及其与沿反应路径的键断裂/形成过程的联系,对反应机理进行了深入研究。电子推动形式主义是描述化学反应性的有力工具。在这里,我们展示了如何恢复路易斯结构,以及卷曲箭头如何根据BET结果描述化学反应机理中的电子密度转移。反应机理通过反应过程中发生的四个连续事件来描述:(1)初始N-C双键的总体转移到N和C原子上; (2)最初的双C–C键的种群转移到C原子上。沿着邻位路径的下一步是:(3)C–C键形成过程,以及(4)O–C键形成过程。 (3)和(4)的顺序在元通道中反转。基于沿着固有反应坐标的结构稳定性域的序列,提出了一个新的同步指数,使我们能够分类和量化1,3-DC反应的(a)同步性,因此可以确定反应的性质机制。

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