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δ,ε-不饱和酮与路易斯酸发生的对映选择性和顺式选择性普林斯环化反应生成1,3-卤代醇。

Syn- and anti-selective Prins cyclizations of delta,epsilon-unsaturated ketones to 1,3-halohydrins with Lewis acids.

作者信息

Miles R Brandon, Davis Chad E, Coates Robert M

机构信息

Department of Chemistry, University of Illinois, 600 South Mathews Avenue, Urbana, Illinois 61801, USA.

出版信息

J Org Chem. 2006 Feb 17;71(4):1493-501. doi: 10.1021/jo052142n.

Abstract

Ten acyclic and monocyclic delta,epsilon-unsaturated ketones, with and without methyl substituents on the double bond, underwent halide-terminated Prins (halo-Prins) cyclizations under anhydrous conditions in the presence of Lewis acids. TiCl4, TiBr4, BCl3, and BBr3 promoted syn-selective cyclizations to sterically congested chloro- and bromohydrins, while SnCl4, SnBr4, InCl3, ZrCl4, and several other Lewis acids effected highly anti-selective reactions to furnish the corresponding trans halohydrins. The stronger Lewis acids (TiX4 and BX3) favor the syn process that involves axial delivery of a halide ligand. Competition experiments showed that substitution at the delta carbon (methallyl enones) led to increased rates (40-50-fold), while substitution at the epsilon position (cis and trans crotyl enones) retarded the rate and eroded the selectivity of the cyclizations. The trends in syn vs anti selectivity, reactivity, and effects of different Lewis acidic metal halides are rationalized by competitive reaction pathways proceeding through syn carbocation-halide ion pairs and a higher order transition state that leads to inversion of configuration and formation of trans halohydrins, along with cyclic olefins arising from proton elimination.

摘要

十种具有或不具有双键甲基取代基的无环和单环δ,ε-不饱和酮,在无水条件下,于路易斯酸存在下进行卤化物终止的普林斯(卤代普林斯)环化反应。四氯化钛、四溴化钛、三氯化硼和三溴化硼促进向空间拥挤的氯代和溴代醇的顺式选择性环化,而四氯化锡、四溴化锡、三氯化铟、四氯化锆以及其他几种路易斯酸则进行高度反式选择性反应,生成相应的反式卤代醇。较强的路易斯酸(四卤化钛和三卤化硼)有利于涉及卤化物配体轴向传递的顺式过程。竞争实验表明,δ位(甲基烯丙基烯酮)的取代导致反应速率提高(40 - 50倍),而ε位(顺式和反式巴豆基烯酮)的取代则减缓反应速率并降低环化反应的选择性。顺式与反式选择性、反应活性以及不同路易斯酸性金属卤化物的影响趋势,可通过经由顺式碳正离子 - 卤离子对的竞争反应途径以及导致构型翻转和反式卤代醇形成的高阶过渡态来解释,同时还有质子消除产生的环烯烃。

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