Utecht-Jarzyńska Greta, Jarzyński Szymon, Rahman Md Mahbubur, Meng Guangrong, Lalancette Roger, Szostak Roman, Szostak Michal
Department of Chemistry, Rutgers University, 73 Warren Street, Newark, New Jersey 07102, United States.
Faculty of Chemistry, University of Lodz, Tamka 12, 91-403 Łódź, Poland.
Organometallics. 2024 Sep 21;43(19):2305-2313. doi: 10.1021/acs.organomet.4c00333. eCollection 2024 Oct 14.
Metal-N-heterocyclic carbene (M-NHC) complexes are well-known as an important class of organometallic compounds widely used in transition-metal catalysis. Taking into account that the steric hindrance around the metal center is one of the major effects in M-NHC catalysis, the development of new, sterically hindered M-NHC complexes is an ongoing interest in this field of research. Herein, we report the synthesis and characterization of exceedingly sterically hindered, well-defined, air- and moisture-stable Cu(I) and Ag(I) complexes, [Cu(NHC)Cl] and [Ag(NHC)Cl], in the recently discovered IPr family of ligands that hinge upon modular peralkylation of anilines. The complexes in both the BIAN and IPr families of ligands are reported. X-ray crystallographic analyses and computational studies were conducted to determine steric effects, Frontier molecular orbitals, and bond orders. The complexes were evaluated in the model hydroboration of the alkynes. We identified [Cu(BIAN-IPr)Cl] and [Ag(BIAN-IPr)Cl] as highly reactive catalysts with the reactivity outperforming the classical IPr and IPr*. Considering the attractive features of well-defined Cu(I)-NHC and Ag(I)-NHC complexes, this class of sterically bulky yet wingtip-flexible complexes will be of interest for catalytic processes in various areas of organic synthesis and catalysis.
金属 - N - 杂环卡宾(M - NHC)配合物是一类著名的重要有机金属化合物,广泛应用于过渡金属催化。考虑到金属中心周围的空间位阻是M - NHC催化中的主要影响因素之一,开发新型的、具有空间位阻的M - NHC配合物是该研究领域一直以来的关注点。在此,我们报道了在最近发现的基于苯胺全烷基化的IPr配体家族中,合成并表征了具有极大空间位阻、结构明确、对空气和湿气稳定的Cu(I)和Ag(I)配合物[Cu(NHC)Cl]和[Ag(NHC)Cl]。同时报道了BIAN和IPr配体家族中的配合物。通过X射线晶体学分析和计算研究来确定空间效应、前线分子轨道和键级。在炔烃的模型硼氢化反应中对这些配合物进行了评估。我们确定[Cu(BIAN - IPr)Cl]和[Ag(BIAN - IPr)Cl]为高活性催化剂,其反应活性优于经典的IPr和IPr*。考虑到结构明确的Cu(I) - NHC和Ag(I) - NHC配合物的吸引人的特性,这类空间庞大但翼尖灵活的配合物将在有机合成和催化的各个领域的催化过程中受到关注。