首页> 外文期刊>International Journal of Quantum Chemistry >Structure and reactivity of the mixed-valence CaMn_4O _5(H_2O)_4 and CaMn_4O _4(OH)(H_2O)_4 clusters at oxygen evolution complex of photosystem II. Hybrid DFT (UB3LYP and UBHandHLYP) calculations
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Structure and reactivity of the mixed-valence CaMn_4O _5(H_2O)_4 and CaMn_4O _4(OH)(H_2O)_4 clusters at oxygen evolution complex of photosystem II. Hybrid DFT (UB3LYP and UBHandHLYP) calculations

机译:CaMn_4O _5(H_2O)_4和CaMn_4O _4(OH)(H_2O)_4混合价簇在光系统II的氧释放复合物上的结构和反应性。混合DFT(UB3LYP和UBHandHLYP)计算

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Very recently Umena et al. have determined the X-ray diffraction (XRD) structure of the CaMn_4O_5 cluster in the oxygen evolution complex (OEC) of photosystem II (PSII) refined to 1.9 ? resolution. We have performed theoretical attempts to elucidate possible electronic and spin states of their new XRD structure of the CaMn_4O_5 cluster. For the purpose, hybrid density functional theory (UB3LYP and UBHandHLYP) calculations have been performed for the mixed-valence (MV) CaMn(III) _(4-ω)(IV)_ωO_5(H_2O) _4 (1) and CaMn(III)_(4-ω)(IV)_ωO _4(OH)(H_2O)_4 (2) clusters as active catalytic site for water splitting reaction in OEC of PSII. Full geometry optimizations of 1a (ω = 2) and 2a (ω = 2) have been performed to elucidate scope and limitation of the cluster models. Both charge and spin fluctuated structures (48 UB3LYP solutions) have been considered for the MV 1a (ω = 2). Total energies obtained by these calculations have elucidated quasi-degenerated electronic and spin states that are characterized by charge and spin density populations. The energy levels revealed by hybrid DFT are analyzed on the basis of the Heisenberg spin Hamiltonian model, providing the effective exchange integrals between manganese ions at a uniform or MV structure. The spin projections for hybrid DFT solutions are performed using the effective exchange integrals. The charge fluctuation model is introduced to analyze relative stabilities among MV structures of 1a and 2a. These computational results for 1a and 2a have explored several characteristic electronic properties of the species that are used for theoretical elucidation of possible mechanisms of water splitting reaction. Orbital and spin correlation diagrams are derived for the O-O bond formation and oxygen evolution in the reaction. Implications of the computational results are also discussed in relation to available experiments and theoretical results by other groups.
机译:最近,Umena等人。确定了精制到1.9的光系统II(PSII)的氧释放复合物(OEC)中CaMn_4O_5团簇的X射线衍射(XRD)结构。解析度。我们已经进行了理论上的尝试,以阐明CaMn_4O_5团簇的新XRD结构的可能电子态和自旋态。为此,已经对混合价(MV)CaMn(III)_(4-ω)(IV)_ωO_5(H_2O)_4(1)和CaMn(III)进行了混合密度泛函理论(UB3LYP和UBHandHLYP)计算)_(4-ω)(IV)_ωO_4(OH)(H_2O)_4(2)聚集为PSII OEC中水分解反应的活性催化位点。已经进行了1a(ω= 2)和2a(ω= 2)的完整几何优化,以阐明聚类模型的范围和局限性。对于MV 1a(ω= 2),已经考虑了电荷和自旋波动结构(48 UB3LYP解决方案)。通过这些计算获得的总能量阐明了以电荷和自旋密度总体为特征的准退化电子态和自旋态。在Heisenberg自旋哈密顿量模型的基础上分析了混合DFT揭示的能级,从而提供了均匀或中压结构的锰离子之间的有效交换积分。混合DFT解决方案的自旋投影是使用有效交换积分执行的。引入电荷波动模型来分析1a和2a MV结构之间的相对稳定性。这些关于1a和2a的计算结果已经探索了该物种的几种特征电子特性,这些特性用于理论上阐明水分解反应的可能机理。得出了反应中O-O键形成和氧释放的轨道和自旋相关图。还与其他小组的可用实验和理论结果相关地讨论了计算结果的含义。

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