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首页> 外文期刊>Angewandte Chemie >Amavadin and Homologues as Mediators of Water Oxidation
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Amavadin and Homologues as Mediators of Water Oxidation

机译:Amavadin和同源物作为水氧化的介质

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摘要

The vanadium(IV) N-hydroxyiminodicarboxylate complexes [V(HIDPA)(2)](2-) and [V(HIDA)(2)](2-), close models of the amavadin (a natural product from Amanita fungi lacking the V=O group but exhibiting a rare NO-bound oxyiminate moiety), are shown to be the first recognized complexes of the early transition metals (up to periodic Group 7) that mediate the oxidation of water. The reactions were analyzed by visible spectrophotometry, mass spectrometry, and measurement of evolved dioxygen using Ce4+ as sacrificial oxidant. A mechanism proposed on the basis of DFT calculations involves the reversible oxidation to the mononuclear V-V-{O(N) over dot <} center, where the redox active oxyimino group plays a key role and metal oxidation state variation is only one unit. The more similar model of the metallobiomolecule, [V(HIDPA)(2)](2-), displays a lower oxidation rate than [V(HIDA)(2)](2-) but does not undergo appreciable degradation, in contrast to the latter.
机译:钒(IV)N-羟基二巯基二羧酸酯络合物[V(HIDPA)(2)](2-)和[V(HIDA)(2)](2-),氨基三蛋白的闭合模型(来自Amanita真菌的天然产物缺乏 v = O组但表现出罕见的无结合的吡啶鎓部分)被证明是介导水氧化的早期过渡金属(最终组7)的第一个识别的复合物。 通过可见分光光度法,质谱和使用CE4 +作为牺牲氧化剂的进化二恶英的测量来分析反应。 基于DFT计算提出的机制涉及可逆氧化对单核V-V- {O(n)的圆点<}中心,其中氧化还原活性钠血清基团起到关键作用,金属氧化状态变化仅是一个单位。 较为类似的金属二聚体,[V(HIDPA)(2)](2-)的型号比[V(HIDA)(2)](2-)显示较低的氧化率,但相比之下不会经历可观的降解 到后者。

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