Maity Soham, Potter Tyler J, Ellman Jonathan A
Department of Chemistry, Yale University, New Haven, CT, USA.
Nat Catal. 2019 Sep;2(9):756-762. doi: 10.1038/s41929-019-0330-7. Epub 2019 Aug 12.
α-Branched amines are present in hundreds of pharmaceutical agents and clinical candidates and are important targets for synthesis. Here we show the convergent synthesis of α-branched amines from three readily accessible starting materials: aromatic C-H bond substrates, terminal alkenes, and aminating agents. This reaction proceeds by an intermolecular formation of C-C and C-N bonds at the carbon branch site through an uncommon 1,1-alkene addition pathway. The reaction is carried out under mild conditions and has high functional group compatibility. Ethylene and propylene feedstock chemicals are effective alkene inputs with ethylene in particular providing for the one step synthesis of α-methyl branched amines, a motif prevalent in drug structures. The reaction is scalable, and 1% loading of an air stable dimeric rhodium precatalyst is effective for several different types of products. The use of chiral catalysts also enables the asymmetric synthesis of α-branched amines.
α-支链胺存在于数百种药物制剂和临床候选药物中,是合成的重要目标。在此,我们展示了从三种易于获得的起始原料:芳族C-H键底物、末端烯烃和胺化剂出发,进行α-支链胺的汇聚合成。该反应通过一种不常见的1,1-烯烃加成途径,在碳支链位点通过分子间形成C-C键和C-N键来进行。反应在温和条件下进行,具有高官能团兼容性。乙烯和丙烯原料化学品是有效的烯烃输入物,特别是乙烯可用于一步合成α-甲基支链胺,这是药物结构中普遍存在的一种结构单元。该反应具有可扩展性,1%负载量的空气稳定二聚铑预催化剂对几种不同类型的产物均有效。使用手性催化剂还能够实现α-支链胺的不对称合成。