Gandhi Soniya, Baire Beeraiah
Department of Chemistry , Indian Institute of Technology Madras , Chennai 600036 , Tamilnadu , India.
J Org Chem. 2019 Apr 5;84(7):3904-3918. doi: 10.1021/acs.joc.8b03027. Epub 2019 Mar 20.
Acid-promoted synthesis of cyclopenta[ b]indole frameworks from 3-indolylmethanols and alkynes has been reported. The overall transformation represents a formal [3 + 2] annulation via rearrangement. This protocol showed good generality for the carbinol substrates as well as alkynes and allowed the generation of structurally diverse cyclopenta[ b]indoles. Terminal alkynes, dialkyl-substituted internal alkynes, and alkynes with electron-deficient substituents were found to be not suitable for this transformation. Similarly, N-Ts and N-Boc groups were compatible with reaction conditions, whereas N-Ac and N-Tf failed to undergo this reaction. Isolation of vinyl chloride intermediate suggested the involvement of a vinylic carbocation intermediate. A mechanism has been proposed involving a ring-opening-ring-closing cascade followed by a 1,3-indole migration process via a spirocyclobutene intermediate.
据报道,通过酸促进3-吲哚甲醇与炔烃合成环戊并[b]吲哚骨架。整个转化过程通过重排实现了形式上的[3 + 2]环化反应。该方法对甲醇底物以及炔烃具有良好的通用性,能够生成结构多样的环戊并[b]吲哚。发现末端炔烃、二烷基取代的内炔烃以及带有缺电子取代基的炔烃不适合该转化反应。同样,N - Ts和N - Boc基团与反应条件兼容,而N - Ac和N - Tf则无法进行此反应。氯乙烯中间体的分离表明涉及乙烯基碳正离子中间体。有人提出了一种机制,包括开环 - 闭环级联反应,随后通过螺环丁烯中间体进行1,3 - 吲哚迁移过程。