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Amorphous manganese oxide remains amorphous upon lithium intercalation and cycling

机译:锂嵌入和循环后,非晶态锰氧化物仍保持非晶态

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Lithium intercalation in amorphous manganese oxide, synthesized by a room temperature aqueous oxidation route, is analyzed. As reported before, the material yields a very high intercalation capacity and also shows promising rate capability as cathode for rechargeable lithium batteries. The present study investigates the structure of the material using X-ray powder diffraction conducted on composite cathode pellets at different stages of discharge and after discharge/charge cycling. Contrary to the behavior of many crystalline manganese oxides that exhibit a tendency to undergo a transformation to a spinel-like phase, the amorphous manganese oxide does not show such a tendency and remains X-ray amorphous upon lithium intercalation and cycling. In fact, the material appears to become even more disordered upon repeated cycling. The results indicate the kinetic stability of the amorphous structure in allowing high-capacity, single-phase and reversible lithium intercalation and suggest the potential of far-from-equilibrium structures as promising intercalation hosts.
机译:分析了通过室温水氧化路线合成的无定形锰氧化物中的锂嵌入。如前所述,该材料具有非常高的插层容量,并且作为可充电锂电池的阴极也显示出极好的速率能力。本研究使用X射线粉末衍射技术研究了复合阴极颗粒在放电的不同阶段以及放电/充电循环后的材料结构。与许多结晶锰氧化物表现出转变为尖晶石状相的趋势相反,非晶态锰氧化物没有表现出这种趋势,并且在锂嵌入和循环后仍保持X射线非晶态。实际上,该材料在反复循环后似乎变得更加无序。结果表明非晶态结构的动力学稳定性允许高容量,单相和可逆的锂嵌入,并暗示了远离平衡结构作为潜在的嵌入主体的潜力。

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