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Role of Oxido Incorporation and Ligand Lability in Expanding Redox Accessibility of Structurally Related Mn4 Clusters

机译:氧化结合和配体不稳定性在扩大结构相关的Mn4团簇的氧化还原可及性中的作用

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摘要

Photosystem II supports four manganese centers through nine oxidation states from manganese(II) during assembly through to the most oxidized state before O2 formation and release. The protein-based carboxylate and imidazole ligands allow for significant changes of the coordination environment during the incorporation of hydroxido and oxido ligands upon oxidation of the metal centers. We report the synthesis and characterization of a series of tetramanganese complexes in four of the six oxidation states from MnII3MnIII to MnIII2 MnIV2 with the same ligand framework (>L) by incorporating four oxido ligands. A 1,3,5-triarylbenzene framework appended with six pyridyl and three alkoxy groups was utilized along with three acetate anions to access tetramanganese complexes, Mn4Ox, with x = 1, 2, 3, and 4. Alongside two previously reported complexes, four new clusters in various states were isolated and characterized by crystallography, and four were observed electrochemically, thus accessing the eight oxidation states from MnII4 to MnIIIMnIV3. This structurally related series of compounds was characterized by EXAFS, XANES, EPR, magnetism, and cyclic voltammetry. Similar to the ligands in the active site of the protein, the ancillary ligand (>L) is preserved throughout the series and changes its binding mode between the low and high oxido-content clusters. Implications for the rational assembly and properties of high oxidation state metal-oxido clusters are presented.
机译:Photosystem II通过从组装过程中的锰(II)到O2形成和释放之前最氧化的状态的9个氧化态来支持四个锰中心。基于蛋白质的羧酸盐和咪唑配体在金属中心氧化后引入羟基和氧化物配体的过程中使配位环境发生重大变化。我们报道了从Mn II 3Mn III 到Mn III 2 Mn六个氧化态中的四个的一系列四锰配合物的合成和表征通过结合四个氧化配体,具有相同配体构架(> L )的 IV 2。使用带有六个吡啶基和三个烷氧基的1,3,5-三芳基苯框架以及三个乙酸根阴离子来访问x = 1、2、3和4的四锰配合物Mn4Ox,以及两个先前报道的配合物,其中四个分离并通过晶体学表征各种状态的新簇,并通过电化学观察四个簇,从而从Mn II 4到Mn III Mn IV进入八个氧化态 3。通过EXAFS,XANES,EPR,磁性和循环伏安法表征了该系列结构相关的化合物。与蛋白质活性位点中的配体相似,辅助配体(> L )在整个系列中均得到保留,并改变了低和高氧化含量簇之间的结合方式。提出了合理组装和性质的高氧化态金属-氧化物簇的含义。

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