首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >A ligand field chemistry of oxygen generation by the oxygen-evolving complex and synthetic active sites
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A ligand field chemistry of oxygen generation by the oxygen-evolving complex and synthetic active sites

机译:通过放氧复合物和合成活性位产生氧气的配体场化学

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摘要

Oxygen–oxygen bond formation and O2 generation occur from the S4 state of the oxygen-evolving complex (OEC). Several mechanistic possibilities have been proposed for water oxidation, depending on the formal oxidation state of the Mn atoms. All fall under two general classifications: the AB mechanism in which nucleophilic oxygen (base, B) attacks electrophilic oxygen (acid, A) of the Mn4Ca cluster or the RC mechanism in which radical-like oxygen species couple within OEC. The critical intermediate in either mechanism involves a metal oxo, though the nature of this oxo for AB and RC mechanisms is disparate. In the case of the AB mechanism, assembly of an even-electron count, high-valent metal-oxo proximate to a hydroxide is needed whereas, in an RC mechanism, two odd-electron count, high-valent metal oxos are required. Thus the two mechanisms give rise to very different design criteria for functional models of the OEC active site. This discussion presents the electron counts and ligand geometries that support metal oxos for AB and RC O–O bond-forming reactions. The construction of architectures that bring two oxygen functionalities together under the purview of the AB and RC scenarios are described.
机译:氧-氧键的形成和O2的产生是由析氧复合物(OEC)的S4状态引起的。根据锰原子的形式氧化态,已经提出了几种用于水氧化的机理。所有这些都可以归为两大类:亲核性氧(碱,B)攻击Mn4Ca簇的亲性氧(酸,A)的AB机制,或在OEC中类似自由基的氧物种耦合的RC机制。两种机理中的关键中间体都涉及金属氧代,尽管这种氧代对AB和RC机理的性质是完全不同的。在AB机理的情况下,需要组装接近于氢氧化物的偶数电子数的高价金属-氧代,而在RC机理中,则需要两个奇数电子数的高价金属-氧代。因此,这两种机制对OEC活动站点的功能模型产生了截然不同的设计标准。讨论提出了支持AB和RC O–O键形成反应的金属氧代的电子数和配体几何形状。描述了在AB和RC情景下将两种氧气功能结合在一起的体系结构的构建。

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