Instituto Universitario de Química Organometálica "Enrique Moles", Universidad de Oviedo, Julián Clavería, 8; 33006 Oviedo (Spain).
Departamento de Química Orgánica (CINBIO and IBIV), Universidade de Vigo, As Lagoas-Marcosende, 36310 Vigo (Spain).
Chemistry. 2015 Nov 16;21(47):16769-74. doi: 10.1002/chem.201503044. Epub 2015 Oct 6.
An unprecedented stereoselective [3+2] carbocyclization reaction of indole-2-carboxaldehydes, anilines, and electron-rich alkenes to obtain cyclopenta[b]indoles is disclosed. This pathway is different from the well-established Povarov reaction: the formal [4+2] cycloaddition involving the same components, which affords tetrahydroquinolines. Moreover, by simply changing the Brønsted acid catalyst, this multicomponent coupling process could be divergently directed towards the conventional Povarov pathway to produce tetrahydroquinolines or to the new pathway (anti-Povarov) to generate cyclopenta[b]indoles. Supported by computational studies, a stepwise Mannich/Friedel-Crafts cascade is proposed for the new anti-Povarov reaction, whereas a concerted [4+2] cycloaddition mechanism is proposed for the Povarov reaction.
一种前所未有的吲哚-2-甲醛、苯胺和富电子烯烃的立体选择性[3+2]环化反应被揭示,可以得到环戊并[b]吲哚。该途径与已建立的 Povarov 反应不同:涉及相同组分的形式[4+2]环加成反应,生成四氢喹啉。此外,只需改变布朗斯台德酸催化剂,这种多组分偶联过程就可以从传统的 Povarov 途径转向生成四氢喹啉,或者从新途径(反 Povarov)生成环戊并[b]吲哚。通过计算研究支持,提出了新的反 Povarov 反应的逐步 Mannich/Friedel-Crafts 级联反应,而对于 Povarov 反应,则提出了协同[4+2]环加成机制。