Lin Jin-Shun, Xiong Ya-Ping, Ma Can-Liang, Zhao Li-Jiao, Tan Bin, Liu Xin-Yuan
Department of Chemistry, South University of Science and Technology of China, Shenzhen 518055 (P. R. China), Fax: (+86) 755-8624-5672.
Chemistry. 2014 Jan 27;20(5):1332-40. doi: 10.1002/chem.201303387. Epub 2013 Dec 20.
A mild, convenient, and step-economical intramolecular aminotrifluoromethylation of unactivated alkenes with a variety of electronically distinct, nitrogen-based nucleophiles in the presence of a simple copper salt catalyst, in the absence of extra ligands, is described. Many different nitrogen-based nucleophiles (e.g., basic primary aliphatic and aromatic amines, sulfonamides, carbamates, and ureas) can be employed in this new aminotrifluoromethylation reaction. The aminotrifluoromethylation process allows straightforward access to diversely substituted CF3-containing pyrrolidines or indolines, in good to excellent yields, through a direct difunctionalization strategy from the respective acyclic starting materials. Mechanistic studies were conducted and a plausible mechanism was proposed.
本文描述了一种温和、便捷且步骤经济的分子内氨三氟甲基化反应,该反应以简单的铜盐为催化剂,在无额外配体的情况下,使未活化烯烃与多种电子性质不同的含氮亲核试剂发生反应。许多不同的含氮亲核试剂(如碱性脂肪族和芳香族伯胺、磺酰胺、氨基甲酸酯和脲)可用于这种新型氨三氟甲基化反应。该氨三氟甲基化过程通过直接双官能团化策略,能以良好至优异的产率直接从相应的无环起始原料获得多种取代的含CF3的吡咯烷或二氢吲哚。进行了机理研究并提出了一种合理的机理。