Department of Chemistry, Rutgers University, 73 Warren Street, Newark, NJ, 07102, USA.
Nat Commun. 2018 Oct 9;9(1):4165. doi: 10.1038/s41467-018-06623-1.
Amide chemistry has an essential role in the synthesis of high value molecules, such as pharmaceuticals, natural products, and fine chemicals. Over the past years, several examples of transamidation reactions have been reported. In general, transition-metal-based catalysts or harsh conditions are employed for these transformations due to unfavorable kinetics and thermodynamics of the process. Herein, we report a significant advance in this area and present the general method for transition-metal-free transamidation of amides and amidation of esters by highly selective acyl cleavage with non-nucleophilic amines at room temperature. In contrast to metal-catalyzed protocols, the method is operationally-simple, environmentally-friendly, and operates under exceedingly mild conditions. The practical value is highlighted by the synthesis of valuable amides in high yields. Considering the key role of amides in various branches of chemical science, we envision that this broadly applicable method will be of great interest in organic synthesis, drug discovery, and biochemistry.
酰胺化学在高价值分子的合成中起着重要作用,如药物、天然产物和精细化学品。在过去的几年中,已经报道了几种转酰胺反应的例子。通常,由于该过程的动力学和热力学不利,需要使用基于过渡金属的催化剂或苛刻的条件来进行这些转化。在此,我们在这一领域取得了重大进展,并提出了在室温下通过非亲核胺高度选择性酰基裂解实现酰胺的无过渡金属转酰胺化和酯的酰胺化的一般方法。与金属催化的方案相比,该方法操作简单、环境友好且在极其温和的条件下进行。通过高产率合成有价值的酰胺突出了该方法的实际价值。考虑到酰胺在化学科学各个分支中的关键作用,我们设想这种广泛适用的方法将在有机合成、药物发现和生物化学中具有重要意义。