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Defining The Electronic And Geometric Structure Of One-electron Oxidized Copper-bis-phenoxide Complexes

机译:定义单电子氧化铜-双酚盐配合物的电子和几何结构

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The geometric and electronic structure of an oxidized Cu complex ([CuSal]~+; Sal = N,N-bis(3,5-di-tert-butylsalicylidene)-1,2-cyclohexane-(1R,2R)-diamine) with a non-innocent salen ligand has been investigated both in the solid state and in solution. Integration of information from UV-vis-NIR spectroscopy, magnetic susceptibility, electrochemistry, resonance Raman spectroscopy, X-ray crystallography, X-ray absorption spectroscopy, and density functional theory calculations provides critical insights into the nature of the localization/delocalization of the oxidation locus. In contrast to the analogous Ni derivative [NiSal]~+ (Storr, T.; et al. Angew. Chem., Int. Ed. 2007, 46, 5198), which exists solely in the Ni(II) ligand-radical form, the locus of oxidation is metal-based for [CuSal]~+, affording exclusively a Cu(III) species in the solid state (4-300 K). Variable-temperature solution studies suggest that [CuSal]~+ exists in a reversible spin-equilibrium between a ligand-radical species [Cu(II)Sal]~+ (S= 1) and the high-valent metal form [Cu(III)Sal]~+ (S = 0), indicative of nearly isoenergetic species. It is surprising that a bis-imine-bis-phenolate ligation stabilizes the Cu(III) oxidation state, and even more surprising that in solution a spin equilibrium occurs without a change in coordination number. The oxidized tetrahydrosalen analogue [CuSal~(red)]~+ (Sal~(red) = N,N'-bis(3,5-di-fert-butylhydroxybenzyl)-1,2-cyclohexane-(1R,2R)-diamine) exists as a temperature-invariant Cu(II)-ligand-radical complex in solution, demonstrating that ostensibly simple variations of the ligand structure affect the locus of oxidation in Cu-bis-phenoxide complexes.
机译:氧化的铜络合物的几何和电子结构([CuSal]〜+; Sal = N,N-双(3,5-二叔丁基水杨基)-1,2-环己烷-(1R,2R)-二胺)在固态和溶液中都研究了具有非清纯的Salen配体的配体。集成了来自紫外可见近红外光谱,磁化率,电化学,共振拉曼光谱,X射线晶体学,X射线吸收光谱和密度泛函理论计算的信息,可对氧化的局部化/离域化的性质提供重要见解轨迹。与类似的Ni衍生物[NiSal]〜+(Storr,T .; et al.Angew.Chem。,Int。Ed。2007,46,5198)仅以Ni(II)配体自由基形式存在,[CuSal]〜+的氧化场所是基于金属的,仅提供固态(4-300 K)的Cu(III)物种。变温溶液研究表明,[CuSal]〜+存在于配体基团[Cu(II)Sal]〜+(S = 1)和高价金属形式[Cu(III)之间的可逆自旋平衡中)Sal]〜+(S = 0),表明几乎是等能量的物种。令人惊讶的是,双亚胺-双酚盐的连接稳定了Cu(III)的氧化态,更令人惊讶的是,在溶液中发生了自旋平衡而没有改变配位数。氧化的四氢沙仑类似物[CuSal_(red)]〜+(Sal〜(red)= N,N'-双(3,5-二-叔丁基羟基苄基)-1,2-环己烷-(1R,2R)-二胺)在溶液中以不随温度变化的Cu(II)-配体-自由基配合物存在,表明表面上简单的配体结构变异会影响Cu-双-酚盐配合物的氧化位点。

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