首页> 外文期刊>Journal of the American Chemical Society >Tetranuclear [Mr~ⅢMn_3~ⅣO_4] Complexes as Spectroscopic Models of the S_2 State of the Oxygen Evolving Complex in Photosystem Ⅱ
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Tetranuclear [Mr~ⅢMn_3~ⅣO_4] Complexes as Spectroscopic Models of the S_2 State of the Oxygen Evolving Complex in Photosystem Ⅱ

机译:四核[Mr〜ⅢMn_3〜ⅣO_4]配合物作为光系统中氧演化配合物S_2状态的光谱模型

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摘要

Despite extensive biochemical, spectroscopic, and computational studies, the mechanism of biological water oxidation by the oxygen evolving complex (OEC) of Photo system II remains a subject of significant debate. Mechanistic proposals are guided by the characterization of reaction intermediates such as the S-2 state, which features two characteristic EPR signals at g = 2 and g = 4.1. Two nearly isoenergetic structural isomers have been proposed as the source of these distinct signals, but relevant structure electronic structure studies remain rare. Herein, we report the synthesis, crystal structure, electrochemistry, XAS, magnetic susceptibility, variable temperature CW-EPR, and pulse EPR data for a series of [(MnMn3O4)-Mn-III-O-IV] cuboidal complexes as spectroscopic models of the S-2 state of the OEC. Resembling the oxidation state and EPR spectra of the S-2 state of the OEC, these model complexes show two EPR signals, a broad low field signal and a multiline signal, that are remarkably similar to the biological system. The effect of systematic changes in the nature of the bridging ligands on spectroscopy were studied. Results show that the electronic structure of tetranuclear Mn complexes is highly sensitive to even small geometric changes and the nature of the bridging ligands. Our model studies suggest that the spectroscopic properties of the OEC may also react very sensitively to small changes in structure; the effect of protonation state and other reorganization processes need to be carefully assessed.
机译:尽管进行了广泛的生化,光谱和计算研究,但Photo System II的放氧复合物(OEC)氧化生物水的机理仍是一个有争议的话题。机理建议以反应中间体(例如S-2状态)的表征为指导,该中间体在g = 2和g = 4.1时具有两个特征性EPR信号。已经提出了两种几乎等能量的结构异构体作为这些不同信号的来源,但是相关的结构电子结构研究仍然很少。在这里,我们报告了一系列[(MnMn3O4)-Mn-III-O-IV]长方体配合物的合成,晶体结构,电化学,XAS,磁化率,可变温度CW-EPR和脉冲EPR数据,作为其光谱模型OEC的S-2状态。这些模型复合物类似于OEC的S-2状态的氧化态和EPR谱,显示出两个EPR信号,即宽阔的低场信号和多线信号,与生物系统极为相似。研究了桥接配体性质的系统变化对光谱学的影响。结果表明,四核锰配合物的电子结构对很小的几何变化和桥连配体的性质都高度敏感。我们的模型研究表明,OEC的光谱性质也可能对结构的细微变化非常敏感地反应。质子化状态和其他重组过程的影响需要仔细评估。

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