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二甲基镁与α-二亚胺的络合作用;单电子转移产物和烷基转移产物的结构与电子顺磁共振表征

Complexation of dimethylmagnesium with alpha-diimines; structural and EPR characterisation of single electron and alkyl transfer products.

作者信息

Bailey Philip J, Dick Caroline M, Fabre Sylvie, Parsons Simon, Yellowlees Lesley J

机构信息

Department of Chemistry, University of Edinburgh, West Mains Road, Edinburgh, UK.

出版信息

Dalton Trans. 2006 Apr 7(13):1602-10. doi: 10.1039/b514591k. Epub 2006 Feb 22.

Abstract

Treatment of dimethylmagnesium with the alpha-diimine ligands Ar'N=C(R)C(R)=NAr' [R = naphth-1,8-diyl (1), H (2), CH3 (3); Ar' = 2,6-diisopropylphenyl] in diethyl ether provides the neutral methyl-bridged dimeric complexes [(alpha-diimine-.)Mg+(mu-CH3)]2 via single electron transfer (SET) to the coordinated diimine and elimination of a methyl radical. These biradical species have been characterised by EPR spectroscopy and, for the ligand , X-ray crystallography. In the presence of THF the reaction of ligand proceeds to the diamagnetic [(ene-1,2-diamide)Mg(THF)3] complex in which the diimine ligand has been doubly reduced to an ene-diamide by two successive SET processes. Comparison of the structural data for the free ligand with that obtained for the alpha-diimine radical anion and ene-diamide complexes shows the expected increases in C-N, and decreases in C-C, bond lengths within the N-C-C-N unit consistent with the progressive reduction of the ligand. In the case of ligand , reaction at low temperature provides the complex [Mg(mu2-Me){Ar'NC(Me)2C(Me)NAr'}]2 in which methyl transfer to a ligand imine carbon atom has occurred. This species has also been structurally characterised. This contrasts with the formation of the radical species at room temperature, and indicates the involvement of an intermediate in which the radical products of the SET process are held in close proximity by the solvent cage. Two competing processes of methyl radical escape and methyl transfer to the ligand account for the formation of the observed products at different temperatures.

摘要

在乙醚中,用α - 二亚胺配体Ar'N = C(R)C(R)=NAr'[R = 萘并 - 1,8 - 二基(1),H(2),CH₃(3);Ar' = 2,6 - 二异丙基苯基]处理二甲基镁,通过单电子转移(SET)至配位的二亚胺并消除一个甲基自由基,得到中性甲基桥联二聚配合物[(α - 二亚胺 -.)Mg⁺(μ - CH₃)]₂。这些双自由基物种已通过电子顺磁共振光谱进行了表征,对于配体 ,还通过X射线晶体学进行了表征。在四氢呋喃存在下,配体反应生成抗磁性的[(烯 - 1,2 - 二酰胺)Mg(THF)₃]配合物,其中二亚胺配体通过两个连续的SET过程被双重还原为烯 - 二酰胺。将游离配体的结构数据与α - 二亚胺自由基阴离子和烯 - 二酰胺配合物获得的数据进行比较,结果表明,在N - C - C - N单元内,C - N键长如预期增加,C - C键长减小,这与配体的逐步还原一致。对于配体 ,低温下的反应生成配合物[Mg(μ₂ - Me){Ar'NC(Me)₂C(Me)NAr'}]₂,其中发生了甲基转移至配体亚胺碳原子的反应。该物种也已进行了结构表征。这与室温下形成自由基物种形成对比,表明存在一个中间体,SET过程的自由基产物在溶剂笼中紧密相邻。甲基自由基逸出和甲基转移至配体这两个竞争过程解释了在不同温度下观察到的产物的形成。

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