Copper-catalyzed 1,2,2-trifunctionalization of maleimides with 1,7-enynes and oxime esters via radical relay/1,5-hydrogen-atom transfer†
Abstract
The trifunctionalization of alkenes has emerged as a versatile strategy for the efficient construction of diverse structural units and complex molecules in synthetic chemistry. Herein, we describe a novel 1,2,2-trifunctionalization of maleimides with 1,7-enynes and oxime esters through simultaneous construction of four C–C bonds and a C![[triple bond, length as m-dash]](https://www.rsc.org/images/entities/char_e002.gif) N bond in one pot based on the radical relay/1,5-hydrogen-atom transfer (HAT) processes under a mild copper catalytic system. The resulting reaction of spirocyclic derivatives displays high chemical selectivity, broad substrate scope, as well as high atom- and step-economy. Preliminary control experiments and density functional theory (DFT) calculations reveal sequential functionalizations and cyclizations in this transformation.
N bond in one pot based on the radical relay/1,5-hydrogen-atom transfer (HAT) processes under a mild copper catalytic system. The resulting reaction of spirocyclic derivatives displays high chemical selectivity, broad substrate scope, as well as high atom- and step-economy. Preliminary control experiments and density functional theory (DFT) calculations reveal sequential functionalizations and cyclizations in this transformation.
- This article is part of the themed collection: 2023 Organic Chemistry Frontiers HOT articles
 
                




 Please wait while we load your content...
                                            Please wait while we load your content...
                                        