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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Chloride ligation in inorganic manganese model compounds relevant to Photosystem II studied using X-ray absorption spectroscopy
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Chloride ligation in inorganic manganese model compounds relevant to Photosystem II studied using X-ray absorption spectroscopy

机译:使用X射线吸收光谱研究与Photosystem II相关的无机锰模型化合物中的氯离子连接

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Chloride ions are essential for proper function of the photosynthetic oxygen-evolving complex (OEC) of Photosystem II (PS II). Although proposed to be directly ligated to the Mn cluster of the OEC, the specific structural and mechanistic roles of chloride remain unresolved. This study utilizes X-ray absorption spectroscopy (XAS) to characterize the Mn–Cl interaction in inorganic compounds that contain structural motifs similar to those proposed for the OEC. Three sets of model compounds are examined; they possess core structures MnIV3O4X (X=Cl, F, or OH) that contain a di-μ-oxo and two mono-μ-oxo bridges or MnIV_2O_2X (X=Cl, F, OH, OAc) that contain a di-μ-oxo bridge. Each set of compounds is examined for changes in the XAS spectra that are attributable to the replacement of a terminal OH or F ligand, or bridging OAc ligand, by a terminal Cl ligand. The X-ray absorption near edge structure (XANES) shows changes in the spectra on replacement of OH, OAc, or F by Cl ligands that are indicative of the overall charge of the metal atom and are consistent with the electronegativity of the ligand atom. Fourier transforms (FTs) of the extended X-ray absorption fine structure (EXAFS) spectra reveal a feature that is present only in compounds where chloride is directly ligated to Mn. These FT features were simulated using various calculated Mn–X interactions (X=O, N, Cl, F), and the best fits were found when a Mn–Cl interaction at a 2.2–2.3 A bond distance was included. There are very few high-valent Mn halide complexes that have been synthesized, and it is important to make such a comparative study of the XANES and EXAFS spectra because they have the potential for providing information about the possible presence or absence of halide ligation to the Mn cluster in PS II.
机译:氯离子对于光系统II(PS II)的光合放氧复合物(OEC)的正常功能至关重要。尽管有人建议直接将其连接到OEC的Mn簇上,但氯化物的具体结构和机理作用仍未解决。这项研究利用X射线吸收光谱(XAS)来表征无机化合物中的Mn–Cl相互作用,这些化合物的结构基序与拟议的OEC相似。检验了三套模型化合物。它们的核心结构为MnIV3O4X(X = Cl,F或OH),其中包含di-μ-氧代基和两个mono-μ-oxo桥或MnIV_2O_2X(X = Cl,F,OH,OAc)中包含di- -氧桥。检查每组化合物在XAS光谱中的变化,这些变化可归因于末端OH或F配体或桥接OAc配体被末端Cl配体取代。 X射线吸收的近边缘结构(XANES)显示了用Cl配体取代OH,OAc或F时光谱的变化,这些变化指示金属原子的总电荷,并且与配体原子的电负性一致。扩展的X射线吸收精细结构(EXAFS)光谱的傅立叶变换(FTs)揭示了仅在氯化物直接与Mn连接的化合物中存在的特征。这些FT特征使用各种计算的Mn–X相互作用(X = O,N,Cl,F)进行了模拟,当包含2.2–2.3 A键距的Mn–Cl相互作用时,可以找到最佳拟合。合成的高价锰卤化物配合物很少,因此对XANES和EXAFS光谱进行这种比较研究很重要,因为它们有可能提供有关卤化物与卤代甲烷连接的可能存在或不存在的信息。 PS II中的锰簇。

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