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Effect of Ni content on the structural and electrochemical properties of Mg1.9Cu0.1Ni chi alloys

机译:镍含量对Mg1.9Cu0.1Ni基合金组织和电化学性能的影响

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摘要

Mg-based alloys, Mg1.9Cu0.1Ni chi (chi = 1.8, 1.9, 2.0, 2.1), were fabricated through high-energy ball milling, and the effects of nickel content on the electrochemical characteristics have been investigated. A high discharge capacity of 490 mAhg(-1) was observed for chi = 1.8, compared with 435 mAhg(-1) for chi = 2.1. As to capacity degradation, 66.7 % of initial capacity was lost after 15 cycles for chi = 1.8, while only 47.2 % for chi = 2.1. Cyclic Voltammograms (CV) indicates that nickel can help maintain redox reaction current and consequently improve the cycle performance. The X-ray mapping analysis indicates that Mg, Ni, and Cu are uniformly distributed in the particles. The 0 content in the alloy electrodes after 15 cycles decreases with the increase of Ni content in the alloys, suggesting that Ni can efficiently suppress the formation of Mg(OH)(2). The linear polarization curves show that the exchange current density, namely the rate of hydriding/dehydriding, increases from 13 mAg-1 to 133 mAg(-1) when the nickel content varies from 1.8 to 2.1. This is also considered as a reason for the observed improved capacity stability.
机译:通过高能球磨制备了镁基合金Mg1.9Cu0.1Nichi(chi = 1.8、1.9、2.0、2.1),并研究了镍含量对电化学性能的影响。对于chi = 1.8,观察到高放电容量为490 mAhg(-1),而对于chi = 2.1,则为435 mAhg(-1)。至于容量降低,对于chi = 1.8,在15个循环后失去了66.7%的初始容量,而对于chi = 2.1,则仅有47.2%。循环伏安图(CV)表明镍可以帮助维持氧化还原反应电流,从而改善循环性能。 X射线映射分析表明,Mg,Ni和Cu均匀地分布在颗粒中。 15个循环后合金电极中的0含量随合金中Ni含量的增加而降低,这表明Ni可以有效地抑制Mg(OH)(2)的形成。线性极化曲线表明,当镍含量从1.8变为2.1时,交换电流密度,即氢化/脱水速率,从13 mAg-1增加到133 mAg(-1)。这也被认为是观察到的容量稳定性提高的原因。

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