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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >High Voltage Mg-Ion Battery Cathode via a Solid Solution Cr-Mn Spinel Oxide
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High Voltage Mg-Ion Battery Cathode via a Solid Solution Cr-Mn Spinel Oxide

机译:高压Mg离子电池阴极通过固溶体Cr-Mn尖晶石氧化物

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Lattice Mg2+ in a tailored solid solution spinel, MgCrMnO4, is electrochemically utilized at high Mn-redox potentials in a nonaqueous electrolyte. Complementary evidence from experimental and theoretical analyses supports bulk Mg2+ (de)intercalation throughout the designed oxide frame where strong electrostatic interaction between Mg2+ and O2- exists. Mg/Mn antisite inversion in the spinel is lowered to similar to 10% via postannealing at 350 degrees C to further improve Mg2+ mobility. Spinel lattice is preserved upon removal of Mg2+ without any phase transformations, denoting structural stability at the charged state at a high potential similar to 3.0 V (vs Mg/Mel. Clear remagnesiation upon first discharge, harvesting up to similar to 180 Wh/kg at 60 degrees C is shown. In the remagnesiated state, insertion of Mg2+ into interstitial sites in the spinel is detected, possibly resulting in partial reversibility which needs to be addressed for structural stability. The observations constitute a first clear path to the development of a practical high voltage Mg-ion cathode using a spinel oxide.
机译:晶格Mg2 +在定制的固溶下尖晶石MgCrmnO4,在非水电解质中的高Mn氧化还原电位下电化学利用。来自实验和理论分析的互补证据支持整个设计的氧化物框架中的批量Mg2 +(DE)嵌入,其中Mg2 +和O2之间的强静电相互作用存在。尖晶石中的Mg / Mn反筋反转降低至相似于350℃的后终止的10%,进一步改善Mg2 +迁移率。在除去Mg2 +时保留尖晶石格没有任何相变,在类似于3.0V的高电位下表示充电状态下的结构稳定性(VS Mg / MEL。在首次放电时清晰,收获相似于180wh / kg示出了60℃。在雷血的状态下,检测尖晶石中的Mg2 +进入尖晶石的间隙位置,可能导​​致需要解决的部分可逆性,这是用于结构稳定性的部分可逆性。观察结果构成了一种实用的发展的第一条明确的道路使用尖晶石氧化物的高压Mg离子阴极。

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