首页> 外文期刊>The Journal of Organic Chemistry >Opposite regiospecific ring opening of 2-(cyanomethyl)aziridines by hydrogen bromide and benzyl bromide: Experimental study and theoretical rationalization
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Opposite regiospecific ring opening of 2-(cyanomethyl)aziridines by hydrogen bromide and benzyl bromide: Experimental study and theoretical rationalization

机译:溴化氢和苄基溴对2-(氰甲基)氮丙啶的区域特异性开环相反:实验研究和理论合理性

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(Figure presented) Ring opening of 1-arylmethyl-2-(cyanomethyl)aziridines with HBr afforded 3-(arylmethyl)amino-4-bromobutyronitriles via regiospecific ring opening at the unsubstituted aziridine carbon. Previous experimental and theoretical reports show treatment of the same compounds with benzyl bromide to furnish 4-amino-3-bromobutanenitriles through ring opening at the substituted aziridine carbon. To gain insights into the regioselective preference with HBr, reaction paths have been analyzed with computational methods. The effect of solvation was taken into account by the use of explicit solvent molecules. Geometries were determined at the B3LYP/6-31++G(d,p) level of theory, and a Grimme-type correction term was included for long-range dispersion interactions; relative energies were refined with the meta-hybrid MPW1B95 functional. Activation barriers confirm preference for ring opening at the unsubstituted ring carbon for HBr. HBr versus benzyl bromide ring opening was analyzed through comparison of the electronic structure of corresponding aziridinium intermediates. Although the electrostatic picture fails to explain the opposite regiospecific nature of the reaction, frontier molecular orbital analysis of LUMOs and nucleophilic Fukui functions show a clear preference of attack for the substituted aziridine carbon in the benzyl bromide case and for the unsubstituted aziridine carbon in the HBr case, successfully rationalizing the experimentally observed regioselectivity.
机译:(给出的图)1-芳基甲基-2-(氰基甲基)氮丙啶与HBr的开环通过在未取代的氮丙啶碳上的区域特异性开环得到3-(芳基甲基)氨基-4-溴丁腈。先前的实验和理论报告表明,用苄基溴处理相同的化合物,可通过在取代的氮丙啶碳上开环来提供4-氨基-3-溴丁腈。为了深入了解HBr的区域选择性偏好,已使用计算方法分析了反应路径。通过使用显式溶剂分子考虑了溶剂化的影响。几何形状是在B3LYP / 6-31 ++ G(d,p)的理论水平上确定的,其中包括Grimme型校正项,以进行长距离色散相互作用。亚杂化MPW1B95功能可改善相对能量。活化屏障证实了对于HBr而言,在未取代的环碳上优选开环。通过比较相应的叠氮鎓中间体的电子结构,分析了HBr与苄基溴的开环。尽管静电图像无法解释反应的相反区域特异性,但LUMO和亲核Fukui功能的前沿分子轨道分析显示出对苄基溴情况下的取代氮丙啶碳和HBr中未取代的氮丙啶碳明显的攻击偏好的情况下,成功地合理化了实验观察到的区域选择性。

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