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镁和铍的逐步还原:卡宾与氧化还原非无辜α-二亚胺的协同效应。

Stepwise Reduction at Magnesium and Beryllium: Cooperative Effects of Carbenes with Redox Non-Innocent α-Diimines.

作者信息

Freeman Lucas A, Walley Jacob E, Obi Akachukwu D, Wang Guocang, Dickie Diane A, Molino Andrew, Wilson David J D, Gilliard Robert J

机构信息

Department of Chemistry , University of Virginia , 409 McCormick Road , PO Box 400319, Charlottesville , Virginia 22904 , United States.

Department of Chemistry and Physics, La Trobe Institute for Molecular Science , La Trobe University , Bundoora , Victoria 3083 , Australia.

出版信息

Inorg Chem. 2019 Aug 19;58(16):10554-10568. doi: 10.1021/acs.inorgchem.9b01058. Epub 2019 May 24.

Abstract

In the past two decades, the organometallic chemistry of the alkaline earth elements has experienced a renaissance due in part to developments in ligand stabilization strategies. In order to expand the scope of redox chemistry known for magnesium and beryllium, we have synthesized a set of reduced magnesium and beryllium complexes and compared their resulting structural and electronic properties. The carbene-coordinated alkaline earth-halides, (CAAC)MgBr (), (SIPr)MgBr (), (CAAC)BeCl (), and (SIPr)BeCl () [CAAC = diethyl cyclic(alkyl)(amino) carbene; SIPr = 1,3-bis(2,6-diisopropylphenyl)-4,5-dihydroimidazole-2-ylidene] were combined with an α-diimine [2,2-bipyridine (bpy) or (2,6-diisopropylphenyl)-1,4-diazabutadiene (DAB)] and the appropriate stoichiometric amount of potassium graphite to form singly- and doubly-reduced compounds (CAAC)MgBr(DAB) (), (CAAC)MgBr(bpy) (), (CAAC)Mg(DAB) (), (CAAC)Be(bpy) (), and (SIPr)Be(bpy) (). The doubly-reduced compounds - exhibit substantial π-bonding interactions across the diimine core, metal center, and π-acidic carbene. Each complex was fully characterized by UV-vis, FT-IR, X-ray crystallography, H, C, and Be NMR, or EPR where applicable. We use these compounds to highlight the differences in the organometallic chemistry of the lightest alkaline earth metals, magnesium and beryllium, in an otherwise identical chemical environment.

摘要

在过去二十年中,碱土金属的有机金属化学迎来了复兴,这在一定程度上归功于配体稳定化策略的发展。为了拓展镁和铍已知的氧化还原化学范围,我们合成了一系列还原态的镁和铍配合物,并比较了它们由此产生的结构和电子性质。将卡宾配位的碱土金属卤化物,(CAAC)MgBr ()、(SIPr)MgBr ()、(CAAC)BeCl () 和 (SIPr)BeCl () [CAAC = 二乙基环(烷基)(氨基)卡宾;SIPr = 1,3-双(2,6-二异丙基苯基)-4,5-二氢咪唑-2-亚基] 与 α-二亚胺 [2,2-联吡啶(bpy)或(2,6-二异丙基苯基)-1,4-二氮杂丁二烯(DAB)] 以及适量化学计量的钾石墨混合,以形成单还原和双还原化合物 (CAAC)MgBr(DAB) ()、(CAAC)MgBr(bpy) ()、(CAAC)Mg(DAB) ()、(CAAC)Be(bpy) () 和 (SIPr)Be(bpy) ()。双还原化合物 - 在二亚胺核心、金属中心和 π-酸性卡宾之间表现出大量的 π 键相互作用。每个配合物都通过紫外可见光谱、傅里叶变换红外光谱、X 射线晶体学、氢、碳和铍核磁共振光谱或适用时的电子顺磁共振光谱进行了全面表征。我们使用这些化合物来突出在其他相同化学环境中最轻的碱土金属镁和铍的有机金属化学差异。

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