Asymmetric one-carbon ring expansion of diverse N-heterocycles via copper-catalyzed diyne cyclization.

IF 11.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Science Advances Pub Date : 2024-10-11 Epub Date: 2024-10-09 DOI:10.1126/sciadv.adq7767
Fu-Shuai Li, Xiu-Yuan Zou, Tian-Qi Hu, Qing Sun, Zhou Xu, Bo Zhou, Long-Wu Ye
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引用次数: 0

Abstract

One-carbon ring expansion reaction of N-heterocycles has gained particular attention in the past decade because this method allows for the conversion of readily available N-heterocycles into potentially useful complex ring-expanded N-heterocycles, which are inaccessible by traditional methods. However, the catalytic asymmetric variant of this reaction has been rarely reported to date. Herein, we disclose an enantioselective one-carbon ring expansion reaction through chiral copper-catalyzed diyne cyclization, leading to the practical, atom-economic and divergent assembly of an array of valuable chiral N-heterocycles bearing a quaternary stereocenter in generally good to excellent yields with excellent enantioselectivities (up to >99% ee). This protocol represents the first example of asymmetric one-carbon ring expansion reaction of N-heterocycles based on alkynes.

通过铜催化二炔环化实现多种 N-杂环的不对称一碳环扩展。
在过去十年中,N-杂环的一碳扩环反应受到了特别关注,因为这种方法可以将容易获得的 N-杂环转化为潜在有用的复杂扩环 N-杂环,而传统方法是无法将其转化为 N-杂环的。然而,该反应的催化不对称变体迄今鲜有报道。在此,我们公开了一种通过手性铜催化二炔环化进行的对映体选择性一碳环扩展反应,从而以一般良好到极佳的收率和极佳的对映体选择性(最高 >99% ee),实用、原子经济地发散组装出一系列具有四元立体中心的有价值的手性 N- 异环。该方案是基于炔烃的 N- 异环不对称一碳扩环反应的首个实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science Advances
Science Advances 综合性期刊-综合性期刊
CiteScore
21.40
自引率
1.50%
发文量
1937
审稿时长
29 weeks
期刊介绍: Science Advances, an open-access journal by AAAS, publishes impactful research in diverse scientific areas. It aims for fair, fast, and expert peer review, providing freely accessible research to readers. Led by distinguished scientists, the journal supports AAAS's mission by extending Science magazine's capacity to identify and promote significant advances. Evolving digital publishing technologies play a crucial role in advancing AAAS's global mission for science communication and benefitting humankind.
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