首页> 外文期刊>Journal of molecular modeling >Unveiling the mechanism and selectivity of [3+2] cycloaddition reactions of benzonitrile oxide to ethyl trans-cinnamate, ethyl crotonate and trans-2-penten-1-ol through DFT analysis
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Unveiling the mechanism and selectivity of [3+2] cycloaddition reactions of benzonitrile oxide to ethyl trans-cinnamate, ethyl crotonate and trans-2-penten-1-ol through DFT analysis

机译:通过DFT分析揭示苄腈氧化苄腈氧化物,乙基甲基肉桂酸酯,乙基rotonate和Trans-2-Penten-1-Ol的机理和选择性

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摘要

The mechanism and regioselectivity of [3+2] cycloaddition (32CA) reactions of benzonitrile oxide with ethyl trans-cinnamate, ethyl crotonate and trans-2-penten-1-ol has been studied in gas phase and in acetonitrile, ethyl acetate and tetrahydrofuran using the B3LYP functional in connection with 6-31G(d) basis set. The 32CA reactions followed one-step mechanism with asynchronous TSs. The calculated global electron density transfer (GEDT) at the TSs showed electronic flux from benzonitrile oxide to ethyl trans-cinnamate and ethyl crotonate, while the electronic flux from trans-2-penten-1-ol to benzonitrile oxide was predicted, in complete agreement with the Conceptual Density Functional Theory (CDFT) indices. The regioselectivity is correctly described in coherence with the experiment data. The intermolecular interaction at the TSs was realized through visualization and quantification by means of independent gradient model (IGM) analysis based on promolecular density.
机译:在气相和乙腈,乙酸乙酯和四氢呋喃中研究了用乙基转氨氧化物,乙基转氨氧化物,乙基rotonate和反式-2-戊1-Ol的机理和区域反应。 使用与6-31g(d)的基础集合相关的B3Lyp功能。 32CA反应遵循具有异步TS的一步机制。 TSS的计算出的全局电子密度转移(GEDT)显示了从苄腈氧化物中的电子通量与乙基反式肉桂酸乙酯和乙基rotOnate,同时预先预测来自反式-2-戊烯-1-醇对苄腈氧化物的电子通量 具有概念密度泛函理论(CDFT)指数。 与实验数据相一致性地描述了区域选择性。 通过通过基于分子密度的独立梯度模型(IGM)分析来实现TSS的分子间相互作用。

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