Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, United Kingdom.
J Am Chem Soc. 2021 Jul 14;143(27):10070-10076. doi: 10.1021/jacs.1c05206. Epub 2021 Jun 28.
The enantioselective amination of C()-H bonds is a powerful synthetic transformation yet highly challenging to achieve in an intermolecular sense. We have developed a family of anionic variants of the best-in-class catalyst for Rh-catalyzed C-H amination, Rh(esp), with which we have associated chiral cations derived from quaternized cinchona alkaloids. These ion-paired catalysts enable high levels of enantioselectivity to be achieved in the benzylic C-H amination of substrates bearing pendant hydroxyl groups. Additionally, the quinoline of the chiral cation appears to engage in axial ligation to the rhodium complex, providing improved yields of product versus Rh(esp) and highlighting the dual role that the cation is playing. These results underline the potential of using chiral cations to control enantioselectivity in challenging transition-metal-catalyzed transformations.
手性阳离子在 Rh 催化 C-H 胺化反应中的应用:对映选择性 C()-H 键胺化是一种强大的合成转化,但在分子间意义上很难实现。我们开发了一类手性阳离子,它们是 Rh 催化 C-H 胺化反应中最佳催化剂 Rh(esp)的阴离子变体,与手性阳离子相关的是来源于季化金鸡纳生物碱的手性阳离子。这些离子对催化剂能够在带有侧羟基的底物的苄基 C-H 胺化中实现高水平的对映选择性。此外,手性阳离子的喹啉似乎与铑配合物发生轴向配位,相对于 Rh(esp)提高了产物的收率,并突出了阳离子所起的双重作用。这些结果强调了使用手性阳离子在具有挑战性的过渡金属催化转化中控制对映选择性的潜力。