Department of Chemistry, Rutgers University, 73 Warren Street, Newark, NJ 07102, USA.
Molecules. 2023 Jan 18;28(3):950. doi: 10.3390/molecules28030950.
Silver-NHC (NHC = N-heterocyclic carbene) complexes play a special role in the field of transition-metal complexes due to (1) their prominent biological activity, and (2) their critical role as transfer reagents for the synthesis of metal-NHC complexes by transmetalation. However, the application of silver-NHCs in catalysis is underdeveloped, particularly when compared to their group 11 counterparts, gold-NHCs (Au-NHC) and copper-NHCs (Cu-NHC). In this Special Issue on , we present a comprehensive overview of the application of silver-NHC complexes in the p-activation of alkynes. The functionalization of alkynes is one of the most important processes in chemistry, and it is at the bedrock of organic synthesis. Recent studies show the significant promise of silver-NHC complexes as unique and highly selective catalysts in this class of reactions. The review covers p-activation reactions catalyzed by Ag-NHCs since 2005 (the first example of p-activation in catalysis by Ag-NHCs) through December 2022. The review focuses on the structure of NHC ligands and p-functionalization methods, covering the following broadly defined topics: (1) intramolecular cyclizations; (2) CO fixation; and (3) hydrofunctionalization reactions. By discussing the role of Ag-NHC complexes in the p-functionalization of alkynes, the reader is provided with an overview of this important area of research and the role of Ag-NHCs to promote reactions that are beyond other group 11 metal-NHC complexes.
银-NHC(NHC = 氮杂环卡宾)配合物在过渡金属配合物领域具有特殊的作用,原因在于:(1)它们具有显著的生物活性,(2)它们作为通过转移金属化合成金属-NHC 配合物的转移试剂起着关键作用。然而,与它们的第 11 族对应物金-NHC(Au-NHC)和铜-NHC(Cu-NHC)相比,银-NHC 在催化中的应用还不够发达。在本期关于 的特刊中,我们全面概述了银-NHC 配合物在炔烃的 p-活化中的应用。炔烃的官能化是化学中最重要的过程之一,也是有机合成的基础。最近的研究表明,银-NHC 配合物作为此类反应中独特且高选择性的催化剂具有巨大的应用潜力。综述涵盖了自 2005 年(Ag-NHC 催化的首例 p-活化)以来由 Ag-NHC 催化的 p-活化反应(截至 2022 年 12 月)。综述重点介绍了 NHC 配体的结构和 p-官能化方法,涵盖了以下广泛定义的主题:(1)分子内环化;(2)CO 固定;和(3)氢官能化反应。通过讨论 Ag-NHC 配合物在炔烃的 p-官能化中的作用,读者可以全面了解这一重要研究领域以及 Ag-NHC 促进超越其他第 11 族金属-NHC 配合物的反应的作用。