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Mn oxidation states in tri- and tetra-nuclear Mn compounds structurally relevant to photosystem II: Mn K-edge X-ray absorption and Kβ X-ray emission spectroscopy studies

机译:与光系统​​II结构相关的三核和四核Mn化合物中的Mn氧化态:Mn K边缘X射线吸收和KβX射线发射光谱研究

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摘要

X-Ray spectroscopy is used to examine the effect of the manganese oxidation state for a series of Mn model compounds. Sensitive to Mn oxidation and structural symmetry, X-ray absorption and emission spectroscopy (XAS and XES) provide complementary insights. However, few benchmark examples of complexes with similar structures but in different oxidation states are available to evaluate data from unknown structures like the oxygen evolving complex (OEC) of Photosystem II (PSII). This study examines two types of compounds prepared in a variety of Mn oxidation states and which possess chemical structures with Mn–Mn interactions (~2.7 Å and ~3.3 Å) that have been observed in the OEC. Model complexes with core compositions Mn3O and Mn4O2 contain combinations of Mn in either a reduced (II) or oxidized (III) state. Within each set of compounds, complexes with higher Mn oxidation states have absorption K-edge energy values that are higher (1.6–2.2 eV) than those of their more reduced counterparts. This trend is accordingly reversed in the Kβ emission spectroscopy where the first moment energy values are lower (0.09–0.12 eV) for compounds with higher Mn oxidation states. We will discuss in detail, how these trends can be quantitatively used to characterize the effects of the Mn oxidation state as well as the surrounding ligand environment on the observed X-ray spectra. The results are discussed with respect to previously obtained data on different S-states of the OEC.
机译:X射线光谱学用于检查一系列Mn模型化合物的锰氧化态的影响。 X射线吸收和发射光谱(XAS和XES)对Mn的氧化和结构对称性敏感,提供了互补的见解。但是,很少有具有相似结构但处于不同氧化态的配合物的基准示例可用于评估未知结构的数据,例如光系统II(PSII)的析氧配合物(OEC)。这项研究研究了在各种Mn氧化态下制备的两种类型的化合物,它们具有在OEC中观察到的具有Mn-Mn相互作用的化学结构(〜2.7Å和〜3.3Å)。具有核心成分Mn3O和Mn4O2的模型配合物包含还原(II)或氧化(III)态的Mn的组合。在每组化合物中,具有较高Mn氧化态的配合物的吸收K边能量值(1.6-2.2 eV)要比还原度更高的配合物更高。因此,这种趋势在Kβ发射光谱中得到了逆转,其中对于具有较高Mn氧化态的化合物,其第一刻矩能量值较低(0.09-0.12 eV)。我们将详细讨论如何将这些趋势定量地用于表征Mn氧化态以及周围配体环境对观察到的X射线光谱的影响。关于先前获得的关于OEC的不同S状态的数据讨论了结果。

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