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Polarized X-ray Absorption Spectroscopy of Single-Crystal Mn(V) Complexes Relevant to the Oxygen-Evolving Complex of Photosystem II

机译:与光系统​​II的析氧配合物有关的单晶Mn(V)配合物的偏振X射线吸收光谱

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摘要

High-valent Mn-oxo species have been suggested to have a catalytically important role in the water splitting reaction which occurs in the Photosystem II membrane protein. In this study, five- and six-coordinate mononuclear Mn(V) compounds were investigated by polarized X-ray absorption spectroscopy in order to understand the electronic structure and spectroscopic characteristics of high-valent Mn species. Single crystals of the Mn(V)-nitrido and Mn(V)-oxo compounds were aligned along selected molecular vectors with respect to the X-ray polarization vector using X-ray diffraction. The local electronic structure of the metal site was then studied by measuring the polarization dependence of X-ray absorption near-edge spectroscopy (XANES) pre-edge spectra (1s to 3d transition) and comparing with the results of density functional theory (DFT) calculations. The Mn(V)-nitrido compound, in which the manganese is coordinated in a tetragonally distorted octahedral environment, showed a single dominant pre-edge peak along the Mn≡N axis that can be assigned to a strong 3dz2–4pz mixing mechanism. In the square pyramidal Mn-(V)-oxo system, on the other hand, an additional peak was observed at 1 eV below the main pre-edge peak. This component was interpreted as a 1s to 3dxz,yz transition with 4px,y mixing, due to the displacement of the Mn atom out of the equatorial plane. The XANES results have been correlated to DFT calculations, and the spectra have been simulated using a TD (time-dependent)-DFT approach. The relevance of these results to understanding the mechanism of the photosynthetic water oxidation is discussed.
机译:已经提出高价的Mn-氧代物质在Photosystem II膜蛋白中发生的水分解反应中具有催化重要作用。在这项研究中,通过极化X射线吸收光谱法研究了五坐标和六坐标的单核Mn(V)化合物,以了解高价Mn物种的电子结构和光谱特性。使用X射线衍射,相对于X射线极化矢量,沿着选定的分子矢量排列Mn(V)-硝基和Mn(V)-氧代化合物的单晶。然后,通过测量X射线吸收近边缘光谱(XANES)前边缘光谱(1s到3d跃迁)的偏振相关性并与密度泛函理论(DFT)的结果进行比较,研究了金属部位的局部电子结构。计算。锰在四方扭曲的八面体环境中配位的Mn(V)-nitrido化合物沿Mn≡N轴显示了一个主要的前缘峰,该峰可以分配给强3dz 2 –4pz混合机制。另一方面,在方形锥体Mn-(V)-氧代系统中,在主边缘前峰以下1 eV处观察到另一个峰。由于Mn原子移出赤道平面,该成分被解释为1px到3dxz,yz跃迁与4px,y混合。 XANES结果已与DFT计算相关,并且已使用TD(时间相关)-DFT方法模拟了光谱。讨论了这些结果与理解光合水氧化机理的相关性。

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