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首页> 外文期刊>ACS Omega >Iron-Catalyzed Reductive Coupling of Alkyl Iodides with Alkynes To Yield cis-Olefins: Mechanistic Insights from Computation
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Iron-Catalyzed Reductive Coupling of Alkyl Iodides with Alkynes To Yield cis-Olefins: Mechanistic Insights from Computation

机译:铁催化的烷基碘与炔烃到顺式烯烃的还原还原偶联:从计算的机理见解。

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In a recent study, a new procedure for Z-selective olefin synthesis by reductive coupling of alkyl iodides with terminal alkynes in the presence of iron salts is described. This transformation is representative of many newly developed synthetic routes through the involvement of multiple species and phases, which makes mechanistic insight hard to obtain. Here, we report computational work aimed at exploring the possible reaction pathways. DFT calculations lead to two suggested routes, one involving C–I reduction by metallic zinc and radical addition to the alkyne and the other involving addition of two reduced iron species to the alkyne bond followed by reductive elimination. Comparison to experimental results as well as kinetic modeling is used to discuss the likelihood of these and related mechanisms.
机译:在最近的研究中,描述了一种在铁盐存在下通过烷基碘与末端炔烃的还原偶联来合成Z-选择性烯烃的新方法。这种转变通过多个物种和阶段的参与,代表了许多新近开发的合成路线,这使得很难获得机械的见解。在这里,我们报告旨在探索可能的反应途径的计算工作。 DFT计算得出两条建议的路线,一条涉及通过金属锌将C–I还原并向炔烃自由基加成,另一条涉及在炔烃键中添加两种还原铁种类,然后进行还原消除。与实验结果以及动力学模型的比较用于讨论这些机制和相关机制的可能性。

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