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首页> 外文期刊>Catalysis science & technology >Theoretical insight into the zinc(II)-catalyzed synthesis of 2-indolyltetrahydroquinolines from N-propargylanilines and indoles: cross-dehydrogenative coupling with temporally separated catalytic activity
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Theoretical insight into the zinc(II)-catalyzed synthesis of 2-indolyltetrahydroquinolines from N-propargylanilines and indoles: cross-dehydrogenative coupling with temporally separated catalytic activity

机译:理论洞察锌(II)催化合成的2-indolyltetrahydroquinolinesN-propargylanilines and indoles:cross-dehydrogenative耦合与暂时分离催化活性

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摘要

A DFT study has been carried out to provide insight into the molecular mechanism of the zinc(II)-catalyzed cross-dehydrogenative coupling of N-propargylanilines with indoles developed by Nakamura et al. (Angew. Chem., Int. Ed., 2016, 55, 6758-6761). The proposed catalytic cycle consists of two subcycles, through which three C-H bonds (two sp(2) and one sp(3)) are activated sequentially. One subcycle carries out the transformation of N-propargylaniline to the intermediate product (IMP), N-benzyl-1,4-dihydroquinoline, and another realizes the transformation of IMP with indole into the final product. Different from general knowledge, the activation of C(sp(3))-H is found to be easier than C(sp(2))-H activation. The reaction is demonstrated to be an abnormal catalytic cascade reaction, which features the temporal separation of the multiple catalytic activities of the zinc(II) catalyst. The cascade characteristic illuminated in the present work is instructive for developing controlled and efficient syntheses of various products from catalytic cascade reactions. A cascade reaction can be designed so well that the catalyst can sequentially show its multiple catalytic activities, allowing for the controlled efficient synthesis of desired intermediates and products. The present work also rationalizes the experimental observation from a deuterium labeling study.
机译:DFT进行了研究洞察的分子机制锌(II)催化cross-dehydrogenative耦合与吲哚由N-propargylanilines跟科幻片阿尔。(Angew。55岁,6758 - 6761)。包含两个子循环,通过这三个碳氢键(两个sp(2)和一个sp(3))被激活按顺序。转换的N-propargylaniline中间产品(IMP),N-benzyl-1 4-dihydroquinoline,另一个实现与吲哚IMP的变换成最终的产品。知识,激活C - h (sp (3))更容易比C - h激活(sp(2))。反应了异常催化串联反应,哪些特性时间的多个催化分离活动的锌(II)催化剂。照亮在目前的工作特点为开发控制和指导各种产品的有效合成催化串联反应。可以设计的很好,催化剂可以吗按顺序显示其多个催化活动,允许有效的控制合成的中间体和产品。目前的工作还密切从一个氘实验观察标记研究。

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