首页> 外文期刊>RSC Advances >DFT study of α-Keggin, lacunary Keggin, and ironII–VI substituted Keggin polyoxometalates: the effect of oxidation state and axial ligand on geometry, electronic structures and oxygen transfer
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DFT study of α-Keggin, lacunary Keggin, and ironII–VI substituted Keggin polyoxometalates: the effect of oxidation state and axial ligand on geometry, electronic structures and oxygen transfer

机译:α-Keggin,Glunnary Keggin和Ironi-VI取代的Keggin聚氧物质的DFT研究:氧化状态和轴向配体对几何,电子结构和氧气转移的影响

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Herein, the geometry, electronic structure, Fe–ligand bonding nature and simulated IR spectrum of α-Keggin, lacunary Keggin, iron( II / III )-substituted and the important oxidized high-valent iron derivatives of Keggin type polyoxometalates have been studied using the density functional theory (DFT/OPTX-PBE) method and natural bond orbital (NBO) analysis. The effects of different Fe oxidation states ( II – VI ) and H _(2) O/OH ~(?) /O ~(2?) ligand interactions have been addressed concerning their geometry and electronic structures. It has been revealed that the d-atomic orbitals of Fe and 2p orbitals of polyoxometalate's oxygen-atoms contribute in ligand binding. Compared with other high valent species, the considered polyoxometalate system of [PW _(11) O _(39) (Fe ~(V) O)] ~(4?) , possesses a high reactivity for oxygen transfer.
机译:在此,研究了几何形状,电子结构,Fe-LigAnd键合性和模拟IR光谱的α-Keggin,Lvunary Keggin,铁(II / III) - 取出和Keggin型多氧化酸酯的重要氧化高价铁衍生物的研究密度泛函理论(DFT / OPTX-PBE)方法和天然键轨道(NBO)分析。已经解决了不同Fe氧化态(II-VI)和H _(2)O / OH〜(α)/ o〜(2?)的效果关于它们的几何和电子结构,已经解决了配体相互作用。已经揭示了多氧酸盐的氧原子的Fe和2P轨道的D-原子轨道有助于配体结合。与其他高性能物种相比,[PW _(11)O _(39)(Fe〜(V)O)]〜(4?)的考虑过氧酸酯系统具有高反应性的氧气转移。

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