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Investigation of Al-doping effects on the NaFe0.5Mn0.5O2 cathode for na-ion batteries

机译:纳米电池对NaFe0.5mn0.5O2阴极al掺杂效应的研究

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摘要

P2-Na2/3MO2 materials have recently been investigated as promising high-capacity cathode hosts for Na-ion batteries. On the other hand, the Na-deficiency in these materials precludes a high energy density when coupled with Na-free anodes. As an alternative, O3-NaFeO2 and its various derivatives such as NaFe0.5Mn0.5O2 have been suggested and investigated. In this study, we dope Al in NaFe0.5Mn0.5O2 and investigate Al-doping effects on the electrochemical properties of the Na+ host. The Al-doped compound shows almost the same conductivity and diffusivity as the pristine structure. However, Al-doping enhances O3-P3 phase transition.
机译:最近,对P2-Na2 / 3MO2材料进行了研究,将其作为有前途的高容量Na-离子电池阴极主体。另一方面,与无钠阳极结合使用时,这些材料中的钠缺乏会排除高能量密度。作为替代方案,已经提出并研究了O3-NaFeO2及其各种衍生物,例如NaFe0.5Mn0.5O2。在这项研究中,我们在NaFe0.5Mn0.5O2中掺杂Al,并研究Al掺杂对Na +主体电化学性能的影响。铝掺杂的化合物显示出与原始结构几乎相同的电导率和扩散率。但是,Al掺杂会增强O3-P3相变。

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