Organisch-Chemisches Institut, Westfälische Wilhelms-Universität, Corrensstrasse 40, 48149 Münster, Germany.
J Org Chem. 2011 Jul 1;76(13):5185-97. doi: 10.1021/jo200896y. Epub 2011 Jun 10.
(E)-3-(hetero)aryl-1-(2-((E)-(indolin-1-ylimino)methyl)phenyl)prop-2-en-1-ones 1 undergo 6-exo-trig cyclization reactions upon treatment with BF(3)·Me(2)S in dichloromethane at low temperature to give the tetralones 10 in good yield. This cyclization process can be considered to be an intramolecular Michael-type addition which is accompanied by an internal redox reaction as the indoline fragment is oxidized to indole with simultaneous hydrogen shift to nitrogen atom N1 and the α-carbon atom of the Michael system. The reactions at the iminic centers take place via umpolung of the classical carbonyl reactivity. The reaction is diastereoselective and affords exclusively 3,4-disubstituted α-tetralones 10 as trans-diastereomers. According to quantum chemical calculations the reactions take place under kinetic control with the trans-diastereomer being the kinetically favored product as it has the lower activation barrier compared to the cis-diastereomer.
(E)-3-(杂芳基)-1-(2-((E)-(吲哚啉-1-亚基甲基)苯基)丙-2-烯-1-酮 1 在低温下与 BF(3)·Me(2)S 在二氯甲烷中反应,发生 6-endo-trig 环化反应,以高收率得到四氢萘酮 10。这个环化过程可以被认为是分子内的迈克尔型加成反应,伴随着内部氧化还原反应,因为吲哚啉片段被氧化为吲哚,同时氢原子从氮原子 N1 转移到迈克尔体系的α-碳原子上。亚胺中心的反应是通过经典羰基反应的反转来进行的。反应具有立体选择性,仅得到反式-3,4-二取代的α-四氢萘酮 10 作为顺式-立体异构体。根据量子化学计算,反应在动力学控制下进行,反式-立体异构体是动力学上有利的产物,因为它的活化能垒比顺式-立体异构体低。