Phipps Robert J, Grimster Neil P, Gaunt Matthew J
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, UK CB2 1EW.
J Am Chem Soc. 2008 Jul 2;130(26):8172-4. doi: 10.1021/ja801767s. Epub 2008 Jun 11.
We have developed a new site-selective Cu(II)-catalyzed C-H bond functionalization process that can selectively arylate indoles at either the C3 or C2 position under mild conditions. The scope of the arylation process is broad and tolerates broad functionality on both the indole and aryl unit, which makes it amenable to further elaboration. The mechanism of the arylation reaction is proposed to proceed via a Cu(III)-aryl species that undergoes initial electrophilic addition at the C3 position of the indole motif. We speculate that site of indole arylation arises through a migration of the Cu(III)-aryl group from C3 to C2, and this can be controlled by the nature of the group on the nitrogen atom; free (NH)- and N-alkylindoles deliver the C3-arylated product, whereas N-acetylindoles afford the C2 isomer, both with excellent yield and selectivity.
我们开发了一种新的位点选择性铜(II)催化的C-H键官能团化方法,该方法能够在温和条件下,在吲哚的C3或C2位置选择性地引入芳基。芳基化反应的适用范围广泛,吲哚和芳基单元上都能耐受多种官能团,这使得该反应易于进一步拓展。芳基化反应的机理被认为是通过一个铜(III)-芳基物种进行的,该物种首先在吲哚基序的C3位置发生亲电加成。我们推测,吲哚芳基化的位点是通过铜(III)-芳基从C3迁移到C2产生的,这可以通过氮原子上基团的性质来控制;游离的(NH)-吲哚和N-烷基吲哚生成C3-芳基化产物,而N-乙酰基吲哚则生成C2异构体,两者都具有优异的产率和选择性。