Karimov Rashad R, Sharma Ankit, Hartwig John F
Department of Chemistry, University of California at Berkeley , Berkeley, California 94720, United States.
ACS Cent Sci. 2016 Oct 26;2(10):715-724. doi: 10.1021/acscentsci.6b00214. Epub 2016 Oct 7.
Selective functionalization of complex scaffolds is a promising approach to alter the pharmacological profiles of natural products and their derivatives. We report the site-selective azidation of benzylic and aliphatic C-H bonds in complex molecules catalyzed by the combination of Fe(OAc) and a PyBox ligand. The same system also catalyzes the trifluoromethyl azidation of olefins to form derivatives of natural products containing both fluorine atoms and azides. In general, both reactions tolerate a wide range of functional groups and occur with predictable regioselectivity. Azides obtained by functionalization of C-H and C=C bonds were converted to the corresponding amines, amides, and triazoles, thus providing a wide variety of nitrogen-containing complex molecules.
复杂骨架的选择性官能团化是一种改变天然产物及其衍生物药理特性的有前景的方法。我们报道了由Fe(OAc)和PyBox配体组合催化的复杂分子中苄基和脂肪族C-H键的位点选择性叠氮化反应。同一体系还催化烯烃的三氟甲基叠氮化反应,以形成同时含有氟原子和叠氮化物的天然产物衍生物。一般来说,这两种反应都能耐受多种官能团,并且以可预测的区域选择性发生。通过C-H和C=C键官能团化得到的叠氮化物被转化为相应的胺、酰胺和三唑,从而提供了各种各样含氮的复杂分子。