Zhou Chao, Shatskiy Andrey, Temerdashev Azamat Z, Kärkäs Markus D, Dinér Peter
Department of Chemistry, Division of Organic Chemistry, KTH Royal Institute of Technology, Teknikringen 30, 10044, Stockholm, Sweden.
Department of Analytical Chemistry, Kuban State University, Stavropolskaya St. 149, 350040, Krasnodar, Russia.
Commun Chem. 2022 Aug 5;5(1):92. doi: 10.1038/s42004-022-00706-3.
Photo-mediated radical dearomatization involving 5-exo-trig cyclizations has proven to be an important route to accessing spirocyclic compounds, whereas 6-exo-trig spirocyclization has been much less explored. In this work, a dearomative annulation cascade is realized through photoredox-mediated C-O bond activation of aromatic carboxylic acids to produce two kinds of spirocyclic frameworks. Mechanistically, the acyl radical is formed through oxidation of triphenylphosphine and subsequent C-O bond cleavage, followed by a 6-exo-trig cyclization/SET/protonation sequence to generate the spiro-chromanone products in an intramolecular manner. Furthermore, the protocol was extended to more challenging intermolecular tandem sequences consisting of C-O bond cleavage, radical addition to an alkene substrate, and 5-exo-trig cyclization to yield complex spirocyclic lactams.
涉及5-外式-三取代环化的光介导自由基去芳构化已被证明是获取螺环化合物的重要途径,而6-外式-三取代螺环化的研究则少得多。在这项工作中,通过光氧化还原介导的芳族羧酸的C-O键活化实现了去芳构化环化级联反应,以产生两种螺环骨架。从机理上讲,酰基自由基是通过三苯基膦的氧化和随后的C-O键裂解形成的,随后是6-外式-三取代环化/单电子转移/质子化序列,以分子内方式生成螺环色酮产物。此外,该方案扩展到更具挑战性的分子间串联序列,包括C-O键裂解、自由基加成到烯烃底物以及5-外式-三取代环化,以生成复杂的螺环内酰胺。