Department of Chemistry, Rutgers University, 73 Warren Street, Newark, NJ 07102, USA.
Molecules. 2021 Jan 2;26(1):188. doi: 10.3390/molecules26010188.
The formation of amide bonds represents one of the most fundamental processes in organic synthesis. Transition-metal-catalyzed activation of acyclic twisted amides has emerged as an increasingly powerful platform in synthesis. Herein, we report the transamidation of -activated twisted amides by selective N-C(O) cleavage mediated by air- and moisture-stable half-sandwich Ni(II)-NHC (NHC = N-heterocyclic carbenes) complexes. We demonstrate that the readily available cyclopentadienyl complex, [CpNi(IPr)Cl] (IPr = 1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene), promotes highly selective transamidation of the N-C(O) bond in twisted N-Boc amides with non-nucleophilic anilines. The reaction provides access to secondary anilides via the non-conventional amide bond-forming pathway. Furthermore, the amidation of activated phenolic and unactivated methyl esters mediated by [CpNi(IPr)Cl] is reported. This study sets the stage for the broad utilization of well-defined, air- and moisture-stable Ni(II)-NHC complexes in catalytic amide bond-forming protocols by unconventional C(acyl)-N and C(acyl)-O bond cleavage reactions.
酰胺键的形成是有机合成中最基本的过程之一。无环扭曲酰胺的过渡金属催化活化已成为合成中越来越强大的平台。在此,我们报告了由空气和水分稳定的半夹心 Ni(II)-NHC(NHC = N-杂环卡宾)配合物介导的通过选择性 N-C(O)裂解的 -活化扭曲酰胺的转酰胺基反应。我们证明,易得的环戊二烯基配合物 [CpNi(IPr)Cl](IPr = 1,3-双(2,6-二异丙基苯基)咪唑-2-亚基)促进扭曲 N-Boc 酰胺中 N-C(O)键的高度选择性转酰胺基反应与非亲核苯胺。该反应通过非常规酰胺键形成途径提供了仲酰胺的途径。此外,还报道了 [CpNi(IPr)Cl] 介导的活化酚和未活化甲酯的酰胺化反应。这项研究为通过非常规 C(酰基)-N 和 C(酰基)-O 键裂解反应在催化酰胺键形成方案中广泛利用定义明确、空气和水分稳定的 Ni(II)-NHC 配合物奠定了基础。