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关于金属介导的2,3-环氧醇区域选择性开环起源的首次理论研究。

A first theoretical study on the origin of the metal-mediated regioselective opening of 2,3-epoxy alcohols.

作者信息

Infante Ivan, Bonini Carlo, Lelj Francesco, Righi Giuliana

机构信息

Dipartimento di Chimica, Università della Basilicata, Via N. Sauro 85, 85100 Potenza, Italy.

出版信息

J Org Chem. 2003 May 16;68(10):3773-80. doi: 10.1021/jo026253n.

Abstract

Hybrid density functional theory (B3LYP) method allows the study of the role of metal ions (Li(+)) in the regioselective opening of 2,3-epoxy alcohols with lithium halides (Cl, Br, I) to the corresponding halohydrins. The theoretical results largely confirm the experimental results, especially with regards to the regioselectivity observed in the opening of the oxirane ring. The C3 halogen attack is always preferred to the C2 attack, with a significant difference in the TS structures with the reaction pathway under kinetic control. The central role of the lithium cation, linked to the oxygen atoms of the epoxy alcohol, is well documented in the reaction mechanisms presented. The energy differences between the two structures of the proposed TS appear to be ascribed to the different contribution of the X-H-O hydrogen bond between the hydroxyl groups of the reactant and the incoming halogen nucleophile.

摘要

杂化密度泛函理论(B3LYP)方法能够用于研究金属离子(Li(+))在2,3 - 环氧醇与卤化锂(Cl、Br、I)区域选择性开环生成相应卤代醇反应中的作用。理论结果在很大程度上证实了实验结果,特别是在环氧乙烷环开环过程中观察到的区域选择性方面。在动力学控制下的反应途径中,C3位的卤素进攻总是比C2位的进攻更受青睐,且过渡态结构存在显著差异。锂阳离子与环氧醇的氧原子相连,在所提出的反应机理中其核心作用得到了充分证明。所提出的过渡态的两种结构之间的能量差异似乎归因于反应物的羟基与进入的卤素亲核试剂之间X - H - O氢键的不同贡献。

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