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Dioxygen reactivity of new bispidine-copper complexes

机译:新型联吡啶-铜配合物的双氧反应性

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摘要

The reactivity of copper complexes of three different second-generation bispidine-based ligands (bispidine = 3,7-diazabicyclo[3.3.1]nonane; mono- and bis-tetradentate; exclusively tertiary amine donors) with dioxygen [(reversible) binding of dioxygen by copper(I)] is reported. The UV-vis, electrospray ionization mass spectrometry, electron paramagnetic resonance, and vibrational spectra (resonance Raman) of the dioxygen adducts indicate that, depending on the ligand and reaction conditions, several different species (mono- and dinuclear, superoxo, peroxo, and hydroperoxo), partially in equilibrium with each other, are formed. Minor changes in the ligand structure and/or experimental conditions (solvent, temperature, relative concentrations) allow switching between the different forms. With one of the ligands, an end-on peroxodicopper(II) complex and a mononuclear hydroperoxocopper(II) complex could be characterized. With another ligand, reversible dioxygen binding was observed, leading to a metastable superoxocopper(II) complex. The amount of dioxygen involved in the reversible binding to Cu ~I was determined quantitatively. The mechanism of dioxygen binding as well as the preference of each of the three ligands for a particular dioxygen adduct is discussed on the basis of a computational (density functional theory) analysis.
机译:三种不同的第二代双联吡啶基配体(双联吡啶= 3,7-二氮杂双环[3.3.1]壬烷;单和双四齿;仅叔胺供体)的铜配合物与双氧[(可逆)结合报道了由铜(I)产生的二氧]。双氧加合物的紫外可见光谱,电喷雾电离质谱,电子顺磁共振和振动光谱(共振拉曼光谱)表明,取决于配体和反应条件,几种不同的物质(单核和双核,超氧,过氧和形成彼此部分平衡的氢过氧)。配体结构和/或实验条件(溶剂,温度,相对浓度)的微小变化允许在不同形式之间切换。使用配体之一,可以表征末端过氧化物二铜(II)配合物和单核氢过氧铜(II)配合物。与另一个配体,观察到可逆的双氧结合,导致亚稳态superoxocopper(II)复合物。定量确定与Cu〜I可逆结合的双氧量。在计算(密度泛函理论)分析的基础上,讨论了双氧结合的机理以及三种配体对特定双氧加合物的偏好。

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