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首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >Mechanism for Three-Component Ni-Catalyzed Carbonyl-Ene Reaction for CO2 Transformation: What Practical Lessons Do We Learn from DFT Modelling?
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Mechanism for Three-Component Ni-Catalyzed Carbonyl-Ene Reaction for CO2 Transformation: What Practical Lessons Do We Learn from DFT Modelling?

机译:三组分Ni催化羰基 - 烯丙基反应的机制转化:我们从DFT建模中学到什么实际的课程?

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In the present study, we use computational quantum chemistry to examine the nickel-catalyzedthree-component coupling for transforming CO2 into a homoallylic alcohol. We find that the reaction is limited by several Ni-assisted atom transfer reactions in the catalytic cycle, in which a new product formation pathway is found from our calculations. Our results also point towards several key factors for an efficient reaction. Thus, substrates that would lead to a stabilized alkene facilitate a key step in the catalytic cycle. The optimal phosphine ligand should provide a good balance between directing stereochemistry with its steric bulk and enabling the reaction without being excessively bulky. Our calculations also highlight the importance of carefully chosen substrates and ligands in order to avoid potential side reactions, and that knowing the conformational preference in the substrate alone may not be sufficient for predicting the stereochemistry.
机译:在本研究中,我们使用计算量子化学来检查将CO 2转化为同源醇的镍催化细胞偶联。 我们发现反应受催化循环中几种Ni辅助原子转移反应的限制,其中来自我们的计算中发现了一种新的产物形成途径。 我们的结果还指出了有效反应的几个关键因素。 因此,将导致稳定烯烃的底物有助于催化循环中的关键步骤。 最佳的磷酸膦配体应在引导立体化学与其空间块状物之间的良好平衡,并使反应能够过度庞大。 我们的计算还突出了精心选择的基材和配体的重要性,以避免潜在的副反应,并且知道单独的衬底中的构象偏好可能不足以预测立体化学。

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