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首页> 外文期刊>Bulletin of the Korean Chemical Society >Reactions of Acetyl Radical with Acetylene - A Computational Study
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Reactions of Acetyl Radical with Acetylene - A Computational Study

机译:乙酰基与乙炔的反应-计算研究

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Ab initio and DFT molecular orbital calculations predict that acetyl radical reacts with acetylene through interactions primarily involving the SOMO of the radical and the in-plane π-bond of acetylene. An energy barrier (ΔE1) of 39.6 kJ mol is predicted for the preferred anti arrangement of reactants at the CCSD(T)/cc-pVDZ//BHandHLYP/cc-pVDZ level of theory. NBO analysis reveals additional interactions between the radical SOMO and the nearby C-H σ-bond in acetylene worth about 10% of the total transition state interaction energy. This type of orbital interaction has not previously been observed in radical addition reactions involving C-C π-bonds.
机译:从头算和DFT分子轨道计算预测,乙酰基通过主要涉及自由基的SOMO和乙炔的平面π键的相互作用而与乙炔反应。在CCSD(T)/ cc-pVDZ // BHandHLYP / cc-pVDZ理论水平上,对于反应物的优选反排列,预测到39.6 kJ mol的能垒(ΔE1)。 NBO分析显示,自由基SOMO与乙炔中附近的C-Hσ-键之间存在额外的相互作用,占总过渡态相互作用能的10%。以前在涉及C-Cπ键的自由基加成反应中未观察到这种轨道相互作用。

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