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首页> 外文期刊>Angewandte Chemie >The Role of Metal Substitution in Tuning Anion Redox in Sodium Metal Layered Oxides Revealed by X-Ray Spectroscopy and Theory
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The Role of Metal Substitution in Tuning Anion Redox in Sodium Metal Layered Oxides Revealed by X-Ray Spectroscopy and Theory

机译:金属代取代在X射线光谱和理论揭示钠金属层状氧化物中的阴离子氧化还原中的作用

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摘要

We investigate high-valent oxygen redox in the positive Na-ion electrode P2-Na0.67-x[Fe0.5Mn0.5]O-2 (NMF) where Fe is partially substituted with Cu (P2-Na0.67-x[Mn0.66Fe0.20Cu0.14]O-2, NMFC) or Ni (P2-Na0.67-x[Mn0.65Fe0.20Ni0.15]O-2, NMFN). From combined analysis of resonant inelastic X-ray scattering and X-ray near-edge structure with electrochemical voltage hysteresis and X-ray pair distribution function profiles, we correlate structural disorder with high-valent oxygen redox and its improvement by Ni or Cu substitution. Density of states calculations elaborate considerable anionic redox in NMF and NMFC without the widely accepted requirement of an A-O-A ' local configuration in the pristine materials (where A=Na and A '=Li, Mg, vacancy, etc.). We also show that the Jahn-Teller nature of Fe4+ and the stabilization mechanism of anionic redox could determine the extent of structural disorder in the materials. These findings shed light on the design principles in TM and anion redox for positive electrodes to improve the performance of Na-ion batteries.
机译:我们研究了正钠离子电极P2-Na0中的高价氧氧化还原。67-x[Fe0.5Mn0.5]O-2(NMF),其中Fe部分被Cu(P2-Na0.67-x[Mn0.66Fe0.20Cu0.14]O-2,NMFC)或Ni(P2-Na0.67-x[Mn0.65Fe0.20Ni0.15]O-2,NMFN)取代。通过对共振非弹性X射线散射和X射线近边结构与电化学电压滞后和X射线对分布函数曲线的联合分析,我们将结构无序与高价氧氧化还原及其通过镍或铜取代的改善相关联。态密度计算详细说明了NMF和NMFC中相当大的阴离子氧化还原作用,而没有广泛接受的原始材料中A-O-A'局部构型的要求(其中A=Na,A'=Li,Mg,空位等)。我们还表明,Fe4+的Jahn-Teller性质和阴离子氧化还原的稳定机制可以决定材料中结构无序的程度。这些发现为改进钠离子电池性能的正极TM和阴离子氧化还原的设计原则提供了依据。

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