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Transition metal oxide thin films with improved reversibility as negative electrodes for sodium-ion batteries

机译:具有改善的可逆性的过渡金属氧化物薄膜作为钠离子电池的负极

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摘要

The preparation of thin films of x Fe_2O_3-(1 - x) NiO (x = 0.38-0.49) is reported. A single two-step process including metal electrodeposition and thermal oxidation was performed. The nanocrystalline character of the electrode material was evidenced by X-Ray diffraction and electron microscopy. The electrochemical properties of sodium batteries assembled with these electrode materials were studied for the first time. The synergic effects of both transition metal elements along with the nano-crystalline character are responsible for the good electrochemical performance. The coulombic efficiency of sodium cell improved drastically up to 68%. The post-mortem analysis of discharged and charged electrodes by ~(57)Fe M?ssbauer spectroscopy allowed determining the redox mechanism on the probe atom during the first cycle.
机译:据报道制备了x Fe_2O_3-(1-x)NiO(x = 0.38-0.49)薄膜。进行了包括金属电沉积和热氧化的单一两步工艺。电极材料的纳米晶体特征通过X射线衍射和电子显微镜证实。首次研究了用这些电极材料组装的钠电池的电化学性能。两种过渡金属元素的协同​​作用以及纳米晶体特性是良好的电化学性能的原因。钠电池的库仑效率大幅提高,达到68%。通过〜(57)Fe Msssbauer光谱对放电电极和充电电极进行事后分析,可以确定在第一个循环中探针原子的氧化还原机理。

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