Zhang Hanmo, Hay E Ben, Geib Stephen J, Curran Dennis P
Department of Chemistry, University of Pittsburgh, Pittsburgh, PA 15260, USA.
Beilstein J Org Chem. 2015 Sep 17;11:1649-55. doi: 10.3762/bjoc.11.181. eCollection 2015.
Two new fates of imine intermediates formed on radical cyclizations of ene-sulfonamides have been identified, reduction and hydration/fragmentation. Tin hydride-mediated cyclizations of 2-halo-N-(3-methyl-N-sulfonylindole)anilines provide spiro[indoline-3,3'-indolones] or spiro-3,3'-biindolines (derived from imine reduction), depending on the indole C2 substituent. Cyclizations of 2-haloanilide derivatives of 3-carboxy-N-sulfonyl-2,3-dihydropyrroles also presumably form spiro-imines as primary products. However, the lactam carbonyl group facilitates the ring-opening of these cyclic imines by a new pathway of hydration and retro-Claisen-type reaction, providing rearranged 2-(2'-formamidoethyl)oxindoles.
已确定烯基磺酰胺自由基环化反应中形成的亚胺中间体有两种新的反应命运,即还原反应和水合/碎片化反应。氢化锡介导的2-卤代-N-(3-甲基-N-磺酰基吲哚)苯胺的环化反应可生成螺[吲哚啉-3,3'-吲哚酮]或螺-3,3'-联吲哚(由亚胺还原反应生成),具体产物取决于吲哚C2位的取代基。3-羧基-N-磺酰基-2,3-二氢吡咯的2-卤代苯胺衍生物的环化反应可能也会首先生成螺亚胺。然而,内酰胺羰基通过一种新的水合和逆克莱森型反应途径促进这些环状亚胺的开环,从而生成重排的2-(2'-甲酰胺基乙基)氧化吲哚。