首页> 外文期刊>Journal of the American Chemical Society >Enantioconvergent Alkylations of Amines by Alkyl Electrophiles: Copper-Catalyzed Nucleophilic Substitutions of Racemic α-Halolactams by Indoles
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Enantioconvergent Alkylations of Amines by Alkyl Electrophiles: Copper-Catalyzed Nucleophilic Substitutions of Racemic α-Halolactams by Indoles

机译:烷基亲电体对映体的胺对映体烷基化:吲哚类化合物的铜催化外消旋α-卤代内酰胺的亲核取代

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摘要

Transition-metal catalysis has the potential to address shortcomings in the classic S(N)2 reaction of an amine with an alkyl electrophile, both with respect to reactivity and to enantioselectivity. In this study, we describe the development of a user-friendly method (reaction at room temperature, with commercially available catalyst components) for the enantioconvergent nucleophilic substitution of racemic secondary alkyl halides (alpha-iodolactams) by indoles. Mechanistic studies are consistent with the formation of a copper(I)-indolyl complex that reacts at different rates with the two enantiomers of the electrophile, which interconvert under the reaction conditions (dynamic kinetic resolution). This investigation complements earlier work on photoinduced enantioconvergent supporting the premise that this important challenge can be addressed by a range of strategies.
机译:过渡金属催化有可能解决胺与烷基亲电子的经典S(N)2反应在反应性和对映选择性方面的缺点。在这项研究中,我们描述了一种用户友好的方法(在室温下反应,与市售催化剂组分反应)的开发,该方法用于吲哚类消旋仲烷基卤化物(α-碘内酰胺)的对映体亲核取代。机理研究与形成铜(I)-吲哚基络合物一致,该络合物以不同的速率与亲电体的两种对映体反应,它们在反应条件下相互转化(动态动力学拆分)。这项研究补充了有关光诱导对映体收敛的早期工作,支持了这一前提,即可以通过多种策略应对这一重要挑战。

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