Muñoz Salvador B, Fleischauer Valerie E, Brennessel William W, Neidig Michael L
Department of Chemistry, University of Rochester, Rochester, New York 14627, United States.
Organometallics. 2018 Sep 24;37(18):3093-3101. doi: 10.1021/acs.organomet.8b00466. Epub 2018 Sep 6.
Iron and -heterocyclic carbenes (NHCs) have proven to be a successful pair in catalysis, with reactivity and selectivity being highly dependent on the nature of the NHC ligand backbone saturation and -substituents. Four (NHC)Fe(1,3-dioxan-2-ylethyl) complexes have been isolated and spectroscopically characterized to correlate their reactivity to steric effects of the NHC from the backbone saturation and -substituents. Only in the extreme case of SIPr where NHC backbone and -substituent steric effects are the largest is there a major structural perturbation observed crystallographically. The addition of only two hydrogen atoms is sufficient for a drastic change in product selectivity in the coupling of 1-iodo-3-phenylpropane with (2-(1,3-dioxan-2-yl)ethyl)magnesium bromide due to resulting structural perturbations to the precatalyst. Mössbauer spectroscopy and magnetic circular dichroism enabled the correlation of covalency and steric bulk in the SIPr case to its poor selectivity in alkyl-alkyl cross-coupling with iron. Density functional theory calculations provided insight into the electronic structure and molecular orbital effects of ligation changes to the iron center. Finally, charge donation analysis and Mayer bond order calculations further confirmed the stronger Fe-ligand bonding in the SIPr complex. Overall, these studies highlight the importance of considering both -substituent and backbone steric contributions to structure, bonding, and reactivity in iron-NHCs.
铁与氮杂环卡宾(NHCs)已被证明是催化领域成功的组合,其反应性和选择性高度依赖于NHC配体骨架饱和度和取代基的性质。已分离出四种(NHC)Fe(1,3 - 二氧六环 - 2 - 基乙基)配合物,并通过光谱对其进行了表征,以关联它们的反应性与来自骨架饱和度和取代基的NHC空间效应。仅在SIPr这种极端情况下,即NHC骨架和取代基空间效应最大时,晶体学上才观察到主要的结构扰动。由于对预催化剂产生结构扰动,在1 - 碘 - 3 - 苯基丙烷与(2 - (1,3 - 二氧六环 - 2 - 基)乙基)溴化镁的偶联反应中,仅添加两个氢原子就足以使产物选择性发生剧烈变化。穆斯堡尔光谱和磁圆二色性使得能够将SIPr情况下的共价性和空间体积与其在与铁进行烷基 - 烷基交叉偶联时的低选择性相关联。密度泛函理论计算深入了解了铁中心配体变化的电子结构和分子轨道效应。最后,电荷捐赠分析和迈耶键级计算进一步证实了SIPr配合物中更强的铁 - 配体键合。总体而言,这些研究突出了考虑取代基和骨架空间贡献对铁 - NHCs的结构、键合和反应性的重要性。