Sakai Norio, Annaka Kimiyoshi, Fujita Akiko, Sato Asuka, Konakahara Takeo
Department of Pure and Applied Chemistry, Faculty of Science and Technology, Tokyo University of Science, Noda, Chiba, Japan.
J Org Chem. 2008 Jun 6;73(11):4160-5. doi: 10.1021/jo800464u. Epub 2008 Apr 29.
Use of a 2-ethynylaniline having an alkyl or aryl group on the terminal alkyne selectively produced a variety of polyfunctionalized indole derivatives in moderate to excellent yields via indium-catalyzed intramolecular cyclization of the corresponding alkynylaniline. In contrast, employment of a substrate with a trimethylsilyl group or with no substituent group on the terminal triple bond, exclusively afforded polysubstituted quinoline derivatives in good yields via indium-promoted intermolecular dimerization of the ethynylaniline. This indium catalytic system successfully accommodated the intramolecular cyclization of other arylalkyne skeletons involving a carboxylic acid and an amide group.
使用在末端炔烃上带有烷基或芳基的2-乙炔基苯胺,通过铟催化相应炔基苯胺的分子内环化反应,能以中等至优异的产率选择性地生成多种多官能化吲哚衍生物。相比之下,使用在末端三键上带有三甲基硅基或无取代基的底物,通过铟促进的乙炔基苯胺分子间二聚反应,能以良好的产率专一性地得到多取代喹啉衍生物。这种铟催化体系成功地实现了涉及羧酸和酰胺基团的其他芳基炔烃骨架的分子内环化反应。