Cheng Qing-Qing, Deng Yongming, Lankelma Marianne, Doyle Michael P
Department of Chemistry, The University of Texas at San Antonio, San Antonio, Texas 78249, USA.
Chem Soc Rev. 2017 Aug 29;46(17):5425-5443. doi: 10.1039/c7cs00324b.
Enoldiazo esters and amides have proven to be versatile reagents for cycloaddition reactions that allow highly efficient construction of various carbocycles and heterocycles. Their versatility is exemplified by (1) [2+n]-cycloadditions (n = 3, 4) by the enol silyl ether units of enoldiazo compounds with retention of the diazo functionality to furnish α-cyclic-α-diazo compounds that are themselves subject to further transformations of the diazo functional group; (2) [3+n]-cycloadditions (n = 1-5) by metallo-enolcarbenes formed by catalytic dinitrogen extrusion from enoldiazo compounds; (3) [2+n]-cycloadditions (n = 3, 4) by donor-acceptor cyclopropenes generated in situ from enoldiazo compounds that produce cyclopropane-fused ring systems. The role of dirhodium(ii) and the emergence of copper(i) catalysts are described, as are the different outcomes of reactions initiated with these catalysts. This comprehensive review on cycloaddition reactions of enoldiazo compounds, with emphasis on methodology development, mechanistic insight, and catalyst-controlled chemodivergence, aims to provide inspiration for future discoveries in the field and to catalyze the application of enoldiazo reagents by the wider synthetic community.
烯重氮酯和酰胺已被证明是用于环加成反应的通用试剂,可实现各种碳环和杂环的高效构建。它们的通用性体现在以下几个方面:(1) 烯重氮化合物的烯醇硅醚单元进行的 [2+n] -环加成反应(n = 3, 4),同时保留重氮官能团,生成α-环-α-重氮化合物,这些化合物自身可进行重氮官能团的进一步转化;(2) 通过烯重氮化合物催化挤出氮气形成的金属烯醇卡宾进行的 [3+n] -环加成反应(n = 1 - 5);(3) 由烯重氮化合物原位生成的供体-受体环丙烯进行的 [2+n] -环加成反应(n = 3, 4),生成环丙烷稠合的环系。本文描述了二铑(ii) 的作用以及铜(i) 催化剂的出现,还介绍了以这些催化剂引发的反应的不同结果。这篇关于烯重氮化合物环加成反应的全面综述,重点关注方法学发展、机理洞察和催化剂控制的化学发散性,旨在为该领域未来的发现提供灵感,并促进烯重氮试剂在更广泛的合成领域中的应用。