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Computational Prediction of One-Step Synthesis of Seven-membered Fused Rings by (5+2) Cycloaddition Utilising Cycloalkenes

机译:利用环烯的(5 + 2)环加成反应一步法合成七元稠环的计算预测。

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The (5+2) cycloaddition reaction utilising cycloalkenes is rare, although it is one of the most efficient methods of constructing seven-membered fused rings because of its high atom- and step-economy. In this study, we used quantum mechanical calculations to predict the plausibility of using the Rh-catalysed intermolecular (5+2) cycloaddition of 3-acyloxy-1,4-enynes and cycloalkenes to produce fused seven-membered carbocycles. The calculation results suggest a convenient, highly efficient and energetically practical approach. Strained cycloalkenes, such as cyclopropene, have been predicted to be active, and the desired bicyclic product should be favoured, accompanied by the formation of byproducts from rearrangement reactions. The energy barriers of the alkene insertion step were analysed by the distortion/interaction model to disclose the origins of the different reactivities of cycloalkenes with different ring sizes.
机译:利用环烯烃的(5 + 2)环加成反应很少见,尽管由于其高原子经济性和逐步经济性,它是构建七元稠合环的最有效方法之一。在这项研究中,我们使用量子力学计算来预测使用Rh催化的3-酰氧基-1,4-炔烃和环烯烃的分子间(5 + 2)环加成反应生成融合的七元碳环的合理性。计算结果表明了一种方便,高效和节能的实用方法。预计应变的环烯烃(例如环丙烯)具有活性,因此应优先采用所需的双环产物,并伴随重排反应形成副产物。通过变形/相互作用模型分析了烯烃插入步骤的能垒,以揭示具有不同环尺寸的环烯烃的不同反应性的起源。

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