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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Unraveling the Critical Role of Ti Substitution in P-2-NaxLiyMn1-yO2 Cathodes for Highly Reversible Oxygen Redox Chemistry
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Unraveling the Critical Role of Ti Substitution in P-2-NaxLiyMn1-yO2 Cathodes for Highly Reversible Oxygen Redox Chemistry

机译:解开Ti取代在P-2-Naxliymn1-Yo2阴极中Ti取代的关键作用,用于高可逆氧氧化还原化学

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Monovalent Li-substitution has been proven to be an effective strategy to resolve the pivotal problems confronted with P2-type layered Mn oxides, such as cooperative Jahn-Teller distortions of Mn3+ ions and drastic P2-(OP4)-O2 phase transformations occurring during desodiation. However, the cycling stability of most Li+-substituted P-2-NaxLiyMn1-yO2 remains far from satisfactory. We herein develop a facile Ti-substitution method to improve the cyclability by taking Na0.72Li0.24Mn0.76O2 (NLMO) as an example. As expected, the novel layered oxide cathode Na0.72Li0.24Ti0.10Mn0.66O2 (NLMTO-0.1) is able to deliver a very high reversible capacity of 165 mA h g(-1) for over 80 cycles within the voltage range of 1.5-4.5 V (vs Na metal), which is among the best for the reported Na-storage cathode materials. Moreover, the structure property relationship of Ti4+ substitution is scrutinized by an arsenal of Na-23/Li-7 solid-state nuclear magnetic resonance, dual-mode electron paramagnetic resonance, and synchrotron X-ray diffraction techniques. The results unequivocally substantiate that Ti substitution can effectively reduce the Li+/Mn4+ ordering in TMO2 slabs, assist the reversible migration of Li+ during Na+ extraction/intercalation, and ultimately enhance the reversibility of the oxygen redox process. This work provides a comprehensive insight into the structure chemistry in developing high-capacity and high-stability layered oxide cathodes.
机译:已被证明是分解用P2型分层Mn氧化物面临的枢转问题的有效策略,例如在退出期间发生的巨型Mn3 +离子的合作Jahn-externer扭曲和激活。然而,大多数Li + -substited的P-2-Naxliymn1-Yo2的循环稳定性仍然远非令人满意。我们在本文中开发了一种容易的Ti替代方法,通过以Na0.72Li0.24mn0.76O2(NLMO)为例来改善可循环性。如所预期的,新型层状氧化物阴极Na0.72LI0.24TI0.10Mn0.66O2(NLMTO-0.1)能够在1.5-的电压范围内以超过80个循环提供超过80个循环的非常高的可逆容量。 4.5 V(VS Na Metal),这是据报道的NA储存阴极材料最好的。此外,Ti4 +取代的结构性质关系通过Na-23 / Li-7固态核磁共振,双模电子顺磁共振和同步X射线衍射技术仔细筛选。结果明确证实,Ti取代可以有效地减少TMO2板坯中的Li + / Mn4 +排序,帮助Li +在Na +提取/插层期间的可逆迁移,最终增强氧氧化还原过程的可逆性。这项工作在开发高容量和高稳定层状氧化物阴极方面提供了全面的洞察结构化学。

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