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Stereoretentive Chlorination of Cyclic Alcohols Catalyzed by Titanium (IV) Tetrachloride: Evidence for a Front Side Attack Mechanism

机译:环状醇的催化氯化stereoretentive由钛(IV)四氯化:证据前侧攻击机制

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摘要

A mild chlorination reaction of alcohols was developed using the classical thionyl chloride reagent but with added catalytic titanium (IV) chloride. These reactions proceeded rapidly to afford chlorination products in excellent yields and with preference for retention of configuration. Stereoselectivities were high for a variety of chiral cyclic secondary substrates including sterically hindered systems. Chlorosulfites were first generated in situ and converted to alkyl chlorides by the action of titanium tetrachloride which is thought to chelate the chlorosulfite leaving group and deliver the halogen nucleophile from the front face. To better understand this novel reaction pathway, an ab initio study was undertaken at DFT level of theory using two different computational approaches. This computational evidence suggests that while the reaction proceeds through a carbocation intermediate, this charged species likely retains pyramidal geometry existing as a conformational isomer stabilized through hyperconjugation (hyperconjomers). These carbocations are then essentially “frozen” in their original configurations at the time of nucleophilic capture.
机译:使用经典的亚硫酰氯试剂,但添加了催化氯化钛(IV),进行了酒精的轻度氯化反应。这些反应迅速进行,以优异的产率提供了氯化产物,并且优选保留构型。对于包括空间位阻系统的各种手性环状二级底物,立体选择性很高。亚氯酸盐首先在原位生成,并在四氯化钛的作用下转化为烷基氯,据认为该螯合亚氯离去基团并从正面释放出卤素亲核试剂。为了更好地理解这种新颖的反应途径,我们使用两种不同的计算方法从理论上对DFT进行了从头开始的研究。该计算证据表明,尽管反应通过碳正离子中间体进行,但该带电物种可能保留通过高共轭(超共轭物)稳定的构象异构体而存在的金字塔形几何形状。这些碳阳离子在亲核捕获时基本上会以其原始构型被“冻结”。

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