Germyl Radical Cyclization of N -Propargyl Aromatic Amines with Germanes: A Concise Route to Germanium-Containing Quinolines

Abstract Quinolines represent a privileged class of heterocyclic scaffolds widely prevalent in biologically active natural products and marketed pharmaceuticals. Despite their significance, the synthesis of germanium-substituted quinolines through germyl radical cyclization has remained unexplored to date. Herein, we report a dilauroyl peroxide (LPO)-mediated cascade protocol involving germylation, cyclization, and aromatization of N-propargyl aromatic amines with germanes, enabling efficient construction of 3-germanium-substituted quinolines. This transformation proceeds via a radical pathway and features high regioselectivity, broad substrate scope, and good functional group compatibility. Mechanistic investigations indicate that cleavage of the Ge–H bond serves as the rate-determining step.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.joc.6c01998
Primary Topic
Radical Photochemical Reactions
Type
article
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article

Germyl Radical Cyclization of N -Propargyl Aromatic Amines with Germanes: A Concise Route to Germanium-Containing Quinolines

Junhao Chen, Xiaolei Huang, Zihan Wu, Yanjun Wu et al.
The Journal of Organic Chemistry
Radical Photochemical Reactions
article

Germyl Radical Cyclization of N -Propargyl Aromatic Amines with Germanes: A Concise Route to Germanium-Containing Quinolines

Junhao Chen, Xiaolei Huang, Zihan Wu, Yanjun Wu, Yue Zhang, Haibin Xiao
article en

Abstract

Abstract Quinolines represent a privileged class of heterocyclic scaffolds widely prevalent in biologically active natural products and marketed pharmaceuticals. Despite their significance, the synthesis of germanium-substituted quinolines through germyl radical cyclization has remained unexplored to date. Herein, we report a dilauroyl peroxide (LPO)-mediated cascade protocol involving germylation, cyclization, and aromatization of N-propargyl aromatic amines with germanes, enabling efficient construction of 3-germanium-substituted quinolines. This transformation proceeds via a radical pathway and features high regioselectivity, broad substrate scope, and good functional group compatibility. Mechanistic investigations indicate that cleavage of the Ge–H bond serves as the rate-determining step.

The Journal of Organic Chemistry
Zhejiang Normal University (CN)
Openalex Percentile: Top 22%
Radical Photochemical Reactions
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