Department of Chemistry and Biochemistry, Worcester Polytechnic Institute, 100 Institute Road, Worcester, MA (USA).
Angew Chem Int Ed Engl. 2015 Dec 1;54(49):14907-10. doi: 10.1002/anie.201507738. Epub 2015 Oct 16.
De novo syntheses of amides often generate stoichiometric amounts of waste. Thus, recent progress in the field has focused on precious metal catalyzed, oxidative protocols to generate such functionalities. However, simple tertiary alkyl amines cannot be used as starting materials in these protocols. The research described herein enables the oxidative synthesis of amides from simple, noncyclic tertiary alkyl amines under synthetically useful, mild conditions through a biologically inspired approach: Fe-catalyzed Cα-H functionalization. Mechanistic investigations provide insight into reaction intermediates and allow the development of a mild Cα-H cyanation method using the same catalyst system. The protocol was further applied to oxidize the drug Lidocaine, demonstrating the potential utility of the developed chemistry for metabolite synthesis.
酰胺的从头合成通常会产生化学计量的废物。因此,该领域的最新进展集中在贵金属催化的氧化方案上,以生成此类官能团。然而,简单的叔烷基胺不能作为这些方案中的起始原料。本文所述的研究通过一种受生物启发的方法:铁催化的 Cα-H 功能化,使简单的非环状叔烷基胺能够在合成上有用的温和条件下氧化合成酰胺。机理研究提供了对反应中间体的深入了解,并允许使用相同的催化剂体系开发一种温和的 Cα-H 氰化方法。该方案进一步应用于氧化药物利多卡因,证明了所开发化学的用于代谢物合成的潜在用途。