Synthesis and Application of NaNi0.5Ti0.5O2 as Electrode Material for Sodium Ion Batteries

N. Nghia, Pham Manh Thao, Nguyên Van Ky, Ngo Quy Quyen, P. D. Long, D. Chien, Nguyen Si Hieu
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Abstract

In this work, NaNi0.5Ti0.5O2 cathode materials of sodium ion batteries were synthesized by a pre-milling combined with solid-state reaction method using sodium hydroxide (NaOH), nickel (II) acetate (2(CH3COO)Ni.4H2O), and titanium dioxide (TiO2) as the precursors. Results of X-ray diffraction analysis of the materials obtained after the milling and calcination processes revealed that the increment of the pre-milling time improved the reactivity of NaOH and TiO2, thereby significantly reduced the content of NiO impurity in the NaNi0.5Ti0.5O2 product. The as-synthesized cathode material possessed an excellent electrochemical performance with 77% capacity (compared to the second cycle) retained after 50 cycles of charge/discharge, and 60% capacity retention when the rate of charge/discharge increased from 0.5 to 8 C.
钠离子电池电极材料NaNi0.5Ti0.5O2的合成及应用
本文以氢氧化钠(NaOH)、乙酸镍(2(CH3COO)Ni.4H2O)和二氧化钛(TiO2)为前驱体,采用预磨结合固相反应法制备了钠离子电池正极材料NaNi0.5Ti0.5O2。对研磨和煅烧后得到的材料进行x射线衍射分析结果表明,预研磨时间的增加提高了NaOH和TiO2的反应活性,从而显著降低了NaNi0.5Ti0.5O2产物中NiO杂质的含量。所合成的正极材料具有优异的电化学性能,在50次充放电循环后,其容量保持率为77%(与第二次循环相比),当充放电倍率从0.5℃增加到8℃时,其容量保持率达到60%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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