1612872-91-9Relevant academic research and scientific papers
IrIII-catalyzed direct C-7 amidation of indolines with sulfonyl, acyl, and aryl azides at room temperature
Hou, Wei,Yang, Yaxi,Ai, Wen,Wu, Yunxiang,Wang, Xuan,Zhou, Bing,Li, Yuanchao
supporting information, p. 395 - 400 (2015/02/02)
A general procedure for an IrIII-catalyzed C-7 selective C-H amidation and amination of indolines is reported. The reaction exhibits good functional group tolerance, requires no external oxidants, and releases N2 as the single byproduct, thus providing an environmentally benign, readily scalable method for the synthesis of 7-aminoindolines. More importantly, acyl, sulfonyl, and aryl azides can be employed as the amino source in this C-H amidation reaction under very mild and pH-neutral reaction conditions (i.e., room temperature) to afford N-(7-indolinyl)amides, N-(7indolinyl)-sulfonamides, and N-(7-indolinyl)arylamines in good to excellent yields. In addition, a one-pot synthesis for 7-aminoindoles was developed. Overall, this procedure is robust, reliable, and compatible in air.
Ruthenium-catalyzed C7 amidation of indoline C-H bonds with sulfonyl azides
Pan, Changduo,Abdukader, Ablimit,Han, Jie,Cheng, Yixiang,Zhu, Chengjian
, p. 3606 - 3609 (2014/04/03)
A ruthenium-catalyzed direct C7 amidation of indoline C-H bonds with sulfonyl azides was developed. This procedure allows the synthesis of a variety of 7-amino-substituted indolines, which are useful in pharmaceutical. The good functional tolerances, as well as the mild conditions, are prominent feature of this method.
