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首页> 外文期刊>The Journal of Organic Chemistry >Regioselectivity of Intermolecular Pauson-Khand Reaction of Aliphatic Alkynes: Experimental and Theoretical Study of the Effect of Alkyne Polarization
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Regioselectivity of Intermolecular Pauson-Khand Reaction of Aliphatic Alkynes: Experimental and Theoretical Study of the Effect of Alkyne Polarization

机译:脂族炔烃的分子间Pauson-Khand反应的区域选择性:炔烃极化作用的实验和理论研究

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摘要

Generally judged poor electronic regioselectivity of alkyne insertion in intermolecular PausonKhand reaction (PKR) has severely restricted its synthetic applications. In our previous rational study concerning diarylalkynes (Fager-Jokela, E.; Muuronen, M.; Patzschke, M.; Helaja, J. J. Org. Chem. 2012, 77, 91349147), both experimental and theoretical results indicated that purely electronic factors, i.e., alkyne polarization via resonance effect, induced the observed modest regioselectivity. In the present work, we substantiate that the alkyne polarization via inductive effect can result notable, synthetically valuable regioselectivity. Computational study at DFT level was performed to disclose the electronic origin of the selectivity. Overall, the NBO charges of alkynes correlated qualitatively with regioisomer outcome. In a detailed computational PKR case study, the obtained Boltzmann distributions of the transition state (TS) populations correlate closely with experimental regioselectivity. Analysis of the TS-structures revealed that weak interactions, e.g., hydrogen bonding and steric repulsion, affect the regioselectivity and can easily override the electronic guidance.
机译:通常认为,在分子间PausonKhand反应(PKR)中炔烃插入的电子区域选择性差,严重限制了其合成应用。在我们先前对二芳基炔烃的理性研究中(Fager-Jokela,E。; Muuronen,M。; Patzschke,M。; Helaja,JJ Org。Chem。2012,77,91349147),实验和理论结果均表明,纯电子因素也就是说,通过共振效应产生的炔烃极化引起了适度的区域选择性。在目前的工作中,我们证实了通过感应效应引起的炔烃极化可以产生显着的,合成上有价值的区域选择性。进行了DFT级的计算研究,以揭示选择性的电子来源。总体而言,炔烃的NBO电荷与区域异构体的结果在质量上相关。在详细的计算PKR案例研究中,获得的过渡态(TS)种群的玻尔兹曼分布与实验区域选择性密切相关。对TS结构的分析表明,弱的相互作用,例如氢键和空间排斥,影响区域选择性,并且可以轻易地超越电子引导。

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