Morofuji Tatsuya, Nagai Shota, Watanabe Airi, Inagawa Kota, Kano Naokazu
Department of Chemistry, Faculty of Science, Gakushuin University 1-5-1 Mejiro Toshima-ku Tokyo 171-8588 Japan
Chem Sci. 2022 Dec 21;14(3):485-490. doi: 10.1039/d2sc06225a. eCollection 2023 Jan 18.
Amine catalysts have emerged as an invaluable tool in organic synthesis. Iminium, enamine, and enamine radical cation species are representative activation modes of amine catalysis. However, the development of new amine catalysis activation modes that enable novel synthetic strategies remains highly desirable. Herein, we report streptocyanine as a new amine catalysis activation mode, which enables the skeletal editing of pyridine rings to benzene rings. -Arylation of pyridines bearing an alkenyl substituent at the 3-position generates the corresponding -arylpyridiniums. The resulting pyridinum reacts with a catalytic amount of piperidine to afford a streptocyanine intermediate. Catalytically generated streptocyanine forms a benzene ring a ring-closing reaction, thereby releasing the amine catalyst. Consequently, the alkene moiety in the starting pyridines is incorporated into the benzene ring of the products. Pyridiniums bearing various alkene moieties were efficiently converted to formyl-substituted benzene derivatives. Mechanistic studies support the postulation that the present catalytic process was intermediated by streptocyanine. In this reaction system, streptocyanine could be regarded as a new activation mode of amine catalysis.
胺催化剂已成为有机合成中一种非常重要的工具。亚胺鎓、烯胺和烯胺自由基阳离子物种是胺催化的代表性活化模式。然而,开发能够实现新型合成策略的新型胺催化活化模式仍然非常必要。在此,我们报道了链花青作为一种新的胺催化活化模式,它能够将吡啶环骨架编辑为苯环。在3-位带有烯基取代基的吡啶的芳基化反应生成相应的芳基吡啶鎓。生成的吡啶鎓与催化量的哌啶反应,得到链花青中间体。催化生成的链花青通过闭环反应形成苯环,从而释放胺催化剂。因此,起始吡啶中的烯烃部分被并入产物的苯环中。带有各种烯烃部分的吡啶鎓被有效地转化为甲酰基取代的苯衍生物。机理研究支持了当前催化过程由链花青介导的假设。在这个反应体系中,链花青可被视为胺催化的一种新的活化模式。