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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Ligand redox activity and mixed valency in first-row transition-metal complexes containing tetrachlorocatecholate and radical tetrachlorosemiquinonate ligands
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Ligand redox activity and mixed valency in first-row transition-metal complexes containing tetrachlorocatecholate and radical tetrachlorosemiquinonate ligands

机译:含四氯儿茶酚酸酯和自由基四氯半醌配体的第一行过渡金属配合物的配体氧化还原活性和混合价

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Ligand noninnocence occurs for complexes composed of redox-active ligands and metals, with frontier orbitals of similar energy. Usually methods of analysis can be used to define the charge distribution, and cases where the metal oxidation state and ligand charge are unclear are unusual. Ligands derived from o-benzoquinones can bond with metals as radical semiquinonates (SQ?-) or as catecholates (Cat~(2-)). Spectroscopic, magnetic, and structural properties can be used to assess the metal and ligand charges. With the redox activity at both the metal and ligands, reversible multicomponent redox series can be observed using electrochemical methods. Steps in the series may occur at either the ligand or metal, and ligand substituent effects can be used to tune the range of ligand-based redox steps. Complexes that appear as intermediates in a ligand-based redox series may contain both SQ and Cat ligands "bridged" by the metal as mixed-valence complexes. Properties reflect the strength of metal-mediated interligand electronic coupling in the same way that ligand-bridged bimetallics conform to the Robin and Day classification scheme. In this review, we will focus specifically on complexes of first-row transition-metal ions coordinated with three ligands derived from tetrachloro-1,2-benzoquinone (Cl_4BQ). The redox activity of this ligand overlaps with the potentials of common metal oxidation states, providing examples of metal- and ligand-based redox activity, in some cases, within a single redox series. The strength of the interligand electronic coupling is important in defining the separation between ligand-based couples of a redox series. The complex of ferric iron will be described as an example where coupling is weak, and the steps associated with the Fe~(III)(Cl _4SQ)_3/[Fe~(III)(Cl_4Cat) _3]~(3-) redox series are observed over a narrow range in electrochemical potential.
机译:配体非纯发生于由氧化还原活性配体和金属组成的配合物,且具有类似能量的前沿轨道。通常可以使用分析方法来定义电荷分布,并且不清楚金属氧化态和配体电荷不清楚的情况。衍生自邻苯醌的配体可以与金属结合成自由基半醌酸酯(SQα-)或儿茶酚酸酯(Cat〜(2-))。光谱,磁性和结构性质可用于评估金属和配体电荷。具有在金属和配体上的氧化还原活性,可以使用电化学方法观察到可逆的多组分氧化还原系列。系列中的步骤可以在配体或金属处发生,并且配体取代基效应可用于调整基于配体的氧化还原步骤的范围。在基于配体的氧化还原系列中以中间体形式出现的络合物可能同时含有SQ和Cat配体,它们被金属“桥接”为混合价络合物。性质反映了金属介导的配位体电子偶联的强度,就像配体桥联的双金属化合物符合Robin和Day分类方案一样。在这篇综述中,我们将特别关注第一行过渡金属离子与来自四氯1,2-苯醌(Cl_4BQ)的三个配体配位的配合物。该配体的氧化还原活性与常见金属氧化态的电位重叠,在某些情况下,在单个氧化还原系列中提供了基于金属和配体的氧化还原活性的实例。配位体电子偶联的强度对于定义氧化还原系列的基于配体的偶联之间的间隔很重要。以三价铁的络合物为例,其中耦合弱,并且与Fe〜(III)(Cl _4SQ)_3 / [Fe〜(III)(Cl_4Cat)_3]〜(3-)氧化还原有关的步骤在较窄的电化学电势范围内观察到串联。

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