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通过铜催化的去芳构化环化反应实现三种手性多环N-杂环的发散性和对映选择性合成

Divergent and Enantioselective Synthesis of Three Types of Chiral Polycyclic N‑Heterocycles via Copper-Catalyzed Dearomative Cyclization.

作者信息

Luo Wen-Feng, Liu Li-Gao, Zheng Yan-Xin, Sun Miao, Lu Xin, Zhou Bo, Ye Long-Wu, Li Long

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces, Key Laboratory of Chemical Biology of Fujian Province, and College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

College of Chemistry & Materials Engineering, Wenzhou University, Wenzhou 325035, China.

出版信息

ACS Cent Sci. 2025 May 2;11(5):805-815. doi: 10.1021/acscentsci.5c00248. eCollection 2025 May 28.

Abstract

Significant advancements have been made in the catalytic asymmetric dearomatization of indoles for constructing valuable chiral polycyclic N-heterocycles. However, the asymmetric dearomative cyclopropanation of indoles continues to pose a formidable challenge. Furthermore, the diverse transformations of indoline-fused cyclopropanes via strain release remain largely unexplored, potentially unveiling new chemistry. Here, we disclose a Cu-catalyzed asymmetric dearomative cyclopropanation of indole-diynes and subsequent [3 + 2] cycloaddition with oxygen, facilitating the divergent and atom-economical synthesis of enantioenriched cyclopropane- and 1,2-dioxolane-fused indolines with moderate to excellent yields and generally outstanding diastereo- and enantioselectivities with broad substrate scope. Importantly, this protocol not only represents the first asymmetric dearomative cyclopropanation of indoles utilizing alkynes as carbene precursors but also constitutes the first catalytic asymmetric construction of chiral 1,2-dioxolanes with high stereoselectivity. Interestingly, Brønsted acid-promoted ring-opening and rearrangement of cyclopropane-fused indolines display distinctive chemoselectivity to afford enantioenriched cyclohepta-[]-indoles in good to excellent efficiency and enantiocontrol. In addition, both potential reaction pathways and the origins of chiral control within this Cu-catalyzed asymmetric tandem sequence are robustly supported by control experiments and theoretical calculations.

摘要

在通过吲哚的催化不对称去芳构化构建有价值的手性多环 N-杂环方面已经取得了重大进展。然而,吲哚的不对称去芳构化环丙烷化仍然是一个巨大的挑战。此外,通过应变释放对吲哚啉稠合环丙烷进行的各种转化在很大程度上仍未被探索,这可能会揭示新的化学性质。在这里,我们报道了一种铜催化的吲哚 - 二炔不对称去芳构化环丙烷化反应,以及随后与氧的 [3 + 2] 环加成反应,促进了对映体富集的环丙烷和 1,2 - 二氧戊环稠合吲哚啉的发散式和原子经济性合成,产率适中至优异,通常具有出色的非对映和对映选择性,底物范围广泛。重要的是,该方法不仅代表了首次利用炔烃作为卡宾前体对吲哚进行不对称去芳构化环丙烷化反应,而且还构成了首次以高立体选择性催化不对称构建手性 1,2 - 二氧戊环的反应。有趣的是,布朗斯特酸促进的环丙烷稠合吲哚啉的开环和重排显示出独特的化学选择性,以良好至优异的效率和对映体控制提供对映体富集的环庚[ ] - 吲哚。此外,对照实验和理论计算有力地支持了这种铜催化的不对称串联反应中的潜在反应途径和手性控制的起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec0d/12123464/f21f12d95f4c/oc5c00248_0001.jpg

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