School of Chemical Sciences, National Institute of Science Education and Research (NISER), An OCC of Homi Bhabha National Institute, PO Bhimpur-Padanpur, Via Jatni, District Khurda, Bhubaneswar, Odisha 752050, India.
J Org Chem. 2023 Jul 7;88(13):8133-8149. doi: 10.1021/acs.joc.3c00127. Epub 2023 Jun 14.
In recent years, catalysis with base metal manganese has received a significant amount of interest. Catalysis with manganese complexes having -heterocyclic carbenes (NHCs) is relatively underdeveloped in comparison to the extensively investigated manganese catalysts possessing pincer ligands (particularly phosphine-based ligands). Herein, we describe the synthesis of two imidazolium salts decorated with picolyl arms ( and ) as NHC precursors. Facile coordination of and with MnBr(CO) in the presence of a base resulted in the formation manganese(I)-NHC complexes ( and ) as an air-stable solid in good isolated yield. Single-crystal X-ray analysis revealed the structure of the cationic complexes [Mn(CO)(NHC)][PF] with tridentate N,C,N binding of the NHC ligand in a facile fashion. Along with a few known manganese(I) complexes, these Mn(I)-NHC complexes and were tested for the hydrosilylation of terminal alkynes. Complex was proved to be an effective catalyst for the hydrosilylation of terminal alkynes with good selectivity toward the less thermodynamically stable β-()-vinylsilanes. This method provided good regioselectivity (-Markovnikov addition) and stereoselectivity (β-()-product). Experimental evidence suggested that the present hydrosilylation pathway involved an organometallic mechanism with manganese(I)-silyl species as a possible reactive intermediate.
近年来,金属锰催化引起了人们的极大兴趣。与广泛研究的具有夹持配体(特别是膦基配体)的锰催化剂相比,含锰配合物的 -杂环卡宾(NHCs)催化相对不发达。在此,我们描述了两种带有吡啶基臂的咪唑盐(和)作为 NHC 前体的合成。和在碱的存在下与 MnBr(CO) 容易配位,在空气中稳定地以良好的分离产率形成了锰(I)-NHC 配合物(和)。单晶 X 射线分析揭示了阳离子配合物[Mn(CO)(NHC)][PF]的结构,其中 NHC 配体以容易的方式采用三齿 N,C,N 配位。这些 Mn(I)-NHC 配合物 2 和与一些已知的锰(I)配合物一起,被用于测试末端炔烃的硅氢化反应。证明配合物 2 是末端炔烃硅氢化反应的有效催化剂,对热力学上不太稳定的β-()-乙烯基硅烷具有良好的选择性。该方法提供了良好的区域选择性(-Markovnikov 加成)和立体选择性(β-()-产物)。实验证据表明,目前的硅氢化途径涉及有机金属机理,其中锰(I)-硅物种可能是一种反应性中间体。