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Revealing stepwise mechanisms in dipolar cycloaddition reactions: computational study of the reaction between nitrones and isocyanates

机译:揭示偶极环加成反应中的逐步机理:硝酮与异氰酸酯之间反应的计算研究

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摘要

The mechanism of cycloaddition reactions of nitrones with isocyanates has been studied using density functional theory (DFT) methods at the M06-2X/cc-pVTZ level of theory. The exploration of the potential energy surfaces associated with two reactive channels leading to 1,2,4-oxadiazolidin-5-ones and 1,4,2-dioxazolidines revealed that the cycloaddition reaction takes place through a concerted mechanism in gas phase and in apolar solvents but a stepwise mechanism in polar solvents. In stepwise mechanisms, the first step of the reaction is a rare case in which the nitrone oxygen acts as a nucleophile by attacking the central carbon atom of the isocyanate (interacting with the π-system of the Ci = O bond) to give an intermediate. The corresponding transition structure is stabilized by an attractive electrostatic interaction favored in a polar medium. The second step of the reaction is the rate-limiting one in which the formation of 1,2,4-oxadiazolidin-5-ones or 1,4,2-dioxazolidines is decided. Calculations indicate that formation of 1,2,4-oxadiazolidin-5-ones is favored both kinetically and thermodynamically independently of the solvent, in agreement with experimental observations. Noncovalent interactions (NCI) and topological analysis of the gradient field of electron localization function (ELF) bonding confirmed the observed interactions.
机译:使用密度泛函理论(DFT)方法在M06-2X / cc-pVTZ理论水平上研究了硝酮与异氰酸酯的环加成反应机理。对与两个导致1,2,4-恶二唑烷-5-酮和1,4,2-二恶唑烷的反应性通道相关的势能面的探索表明,环加成反应是通过气相和非极性的协同机理进行的。极性溶剂中的逐步机理。在逐步机理中,反应的第一步是极少数情况,其中硝酮氧通过攻击异氰酸酯的中心碳原子(与Ci = O键的π系统相互作用)而充当亲核试剂。相应的过渡结构通过极性介质中有利的有吸引力的静电相互作用而得以稳定。反应的第二步是限速反应,其中确定了1,2,4-恶二唑啉丁-5-酮或1,4,2-二恶唑烷的形成。计算表明,与实验结果一致,在动力学和热力学上均与溶剂无关地倾向于形成1,2,4-恶二唑烷-5-酮。非共价相互作用(NCI)和电子定位功能(ELF)键的梯度场的拓扑分析证实了观察到的相互作用。

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