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Mechanisms and stereoselectivities of the Rh(Ⅰ)-catalyzed carbenoid carbon insertion reaction of benzocyclobutenol with diazoester

机译:Rh(Ⅰ)催化苯并环丁烯醇与重氮酯类胡萝卜素碳插入反应的机理和立体选择性

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摘要

In this study, a density functional theory (DFT) study has been carried out to investigate the mechanisms of Rh(Ⅰ)-catalyzed carbenoid carbon insertion into a C-C bond reaction between benzocyclobutenol (R1) and diazoester (R2). The calculated results indicate that the reaction proceeds through five stages: de-protonation of Rl, cleavage of the C-C bond, carbenoid carbon insertion, intramolecular aldol reaction, and protonation of the alkoxyl-Rh(Ⅰ) intermediate. We have suggested and studied two possible pathways according to different coordination patterns (including ketone-type and enol-type coordination forms) in the fourth stage and found that the enol-type pathway is favorable, making the coordination mode of the Rh(Ⅰ) center in the oxa-π-allyl Rh(Ⅰ) intermediate clear in this reaction system. Moreover, four possible protonation channels have been calculated in the fifth stage, and the computational results show that the H_2O-assisted proton transfer channel is the most favorable. The first step of the third stage is rate-determining, and the first steps in stages 3 and 4 play important roles in determining the stereoselectivities. Moreover, the analyses of distortion/interaction, natural bond orbital (NBO), and molecular orbital (MO) have been performed to better understand this title reaction. Furthermore, the pathway corresponding to the RR configurational product is the most favorable path, which is consistent with the experimental result. This work should be helpful for understanding the detailed reaction mechanism and the origin of stereoselectivities of the title reaction and thus could provide valuable insights into rational design of more efficient catalysts for this type of reactions.
机译:在这项研究中,已经进行了密度泛函理论(DFT)研究,以研究Rh(Ⅰ)催化的类碳素插入苯并环丁烯醇(R1)和重氮酸酯(R2)的C-C键反应中。计算结果表明反应进行了五个阶段:R1的去质子化,C-C键的裂解,类胡萝卜素碳的插入,分子内醇醛反应和烷氧基-Rh(Ⅰ)中间体的质子化。在第四阶段,我们根据不同的配位方式(包括酮型和烯醇型配位形式)提出了两种可能的途径,研究发现烯醇型途径是有利的,从而使Rh(Ⅰ)的配位方式在该反应体系中,在氧杂-π-烯丙基Rh(Ⅰ)中间体中的中心清除。此外,在第五阶段计算了四个可能的质子化通道,计算结果表明,H_2O辅助质子传递通道是最有利的。第三阶段的第一步是速率确定,而阶段3和4的第一步在确定立体选择性中起重要作用。此外,已经进行了畸变/相互作用,自然键轨道(NBO)和分子轨道(MO)的分析,以更好地理解该标题反应。此外,与RR构型产物相对应的途径是最有利的途径,这与实验结果一致。这项工作应有助于理解详细的反应机理和标题反应的立体选择性的起源,从而可以为合理设计这类反应的更有效催化剂提供有价值的见解。

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  • 来源
    《Organic & biomolecular chemistry》 |2015年第23期|6587-6597|共11页
  • 作者单位

    College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, PR China;

    College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, PR China;

    College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, PR China;

    College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, PR China;

    College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, PR China;

    College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, PR China;

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