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解释异土木香内酯与重氮环丙烷之间[3+2]环加成反应的选择性及反应机理。

Explaining the selectivities and the mechanism of [3+2] cycloloaddition reaction between isoalantolactone and diazocyclopropane.

作者信息

Ouled Aitouna Anas, Barhoumi Ali, El Alaoui El Abdallaoui Habib, Mazoir Noureddine, Elalaoui Belghiti Mohammed, Syed Asad, Bahkali Ali H, Verma Meenakshi, Zeroual Abdellah

机构信息

Molecular Modeling and Spectroscopy Research Team, Faculty of Science, Chouaïb Doukkali University, P.O. Box 20, 24000, El Jadida, Morocco.

Laboratory of Bioorganic Chemistry, Department of Chemistry, Faculty of Sciences, Chouaïb Doukkali University, P.O. Box 20, 24000, El Jadida, Morocco.

出版信息

J Mol Model. 2023 Aug 15;29(9):280. doi: 10.1007/s00894-023-05688-0.

Abstract

CONTEXT

[3+2] cycloaddition processes between isoalantolactone (ISALL) and diazocyclopropane (DCYP), have been surveyed exercising the MEDT, reactivity indices, reactions, and activation energies, are computed. In an investigation of conceptual DFT indices, DCYP behaves as a nucleophile in this reaction, whereas ISALL acts as an electrophile. This cyclization is stereo-, chemo-, and regiospecific, as demonstrated by the activation and reaction energies, in clear agreement with the experiment's results. The mechanism for this [3+2] cycloaddition is occurring in two steps, according to ELF analysis.

METHODS

For the purposes of this investigation, all computations were performed using the Gaussian 09 program. The optimization was completed using Berny's computational gradient optimization approach with the basis set 6-311G(d,p) and wB97XD functional. Frequency computations were utilized to characterize and locate stationary points where the transition phases have just one imaginary frequency and all frequencies for the reactants and products are positive. After evaluating the effect of dichloromethane (DCM) as a reaction solvent, the stationary point optimization was updated using the polarizable continuum model (PCM) developed by the Tomasi team. The electron localization function (ELF) has been examined within the context of topological investigations using Multiwfn software with a 0.05 grid step.

摘要

背景

已对异土木香内酯(ISALL)与重氮环丙烷(DCYP)之间的[3 + 2]环加成反应进行了研究,运用分子能量分布理论(MEDT)计算了反应活性指数、反应过程及活化能。在对概念性密度泛函理论(DFT)指数的研究中,DCYP在该反应中表现为亲核试剂,而ISALL则作为亲电试剂。如活化能和反应能所示,这种环化反应具有立体、化学和区域选择性,与实验结果完全一致。根据电子定域函数(ELF)分析,该[3 + 2]环加成反应分两步进行。

方法

为了本次研究,所有计算均使用高斯09程序进行。优化过程采用伯尔尼计算梯度优化方法,基组为6 - 311G(d,p) ,泛函为wB97XD。频率计算用于表征和定位驻点,其中过渡相只有一个虚频,反应物和产物的所有频率均为正值。在评估二氯甲烷(DCM)作为反应溶剂的影响后,使用托马西团队开发的极化连续介质模型(PCM)对驻点优化进行了更新。已使用Multiwfn软件在拓扑研究的背景下,以0.05的网格步长对电子定域函数(ELF)进行了研究。

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