Issue 6, 2025

Copper-catalyzed Buchner reaction and phenyl cyclopropanation through diyne cyclization

Abstract

The Buchner reaction, as an exclusive category of expansive dearomatization, represents a powerful approach for the construction of valuable functionalized cycloheptatrienes in a direct manner from readily available aromatic precursors. However, the traditional Buchner reaction almost relies on using explosive diazo compounds as carbene precursors. Herein, we disclose a copper-catalyzed Buchner reaction through diyne cyclization, and bicycle-fused cycloheptatrienes bearing all carbon quaternary stereogenic centers are obtained in moderate to excellent yields with a broad substrate scope. In addition, norcaradiene derivatives can also be selectively produced by substrate control through a phenyl cyclopropanation reaction, thus constituting a copper-catalyzed controllable cyclization of diynes.

Graphical abstract: Copper-catalyzed Buchner reaction and phenyl cyclopropanation through diyne cyclization

Supplementary files

Article information

Article type
Research Article
Submitted
19 Dec 2024
Accepted
20 Jan 2025
First published
22 Jan 2025
This article is Open Access
Creative Commons BY license

Org. Chem. Front., 2025,12, 1966-1972

Copper-catalyzed Buchner reaction and phenyl cyclopropanation through diyne cyclization

T. Li, J. He, K. Fan, L. Ye, B. Zhou and X. Zhu, Org. Chem. Front., 2025, 12, 1966 DOI: 10.1039/D4QO02371D

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