首页> 外文期刊>中南大学学报(英文版) >An investigation on electrochemical performances of as-cast and annealed La0.8Mg0.2Ni3.3Co0.2Six(x = 0-0.2) alloy electrodes for Ni/MH battery application
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An investigation on electrochemical performances of as-cast and annealed La0.8Mg0.2Ni3.3Co0.2Six(x = 0-0.2) alloy electrodes for Ni/MH battery application

机译:用于Ni / MH电池的铸态退火La0.8Mg0.2Ni3.3Co0.2Six(x = 0-0.2)合金电极的电化学性能研究

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The La-Mg-Ni-based A2B7-type La0.8Mg0.2Ni3.3Co0.2Six(x=0-0.2) electrode alloys were prepared by casting and annealing. The influences of the additional silicon and the annealing treatment on the structure and electrochemical performances of the alloys were investigated systemically. Both of the analyses of XRD and SEM reveal that the as-cast and annealed alloys are of a multiphase structure, involving two main phases (La, Mg)2Ni7 and LaNi5 as well as one minor phase LaNi3. The addition of Si and annealing treatment bring on an evident change in the phase abundances and cell parameters of (La, Mg)2Ni7 and LaNi5 phase for the alloy without altering its phase structure. The phase abundances decrease from 74.3% (x=0) to 57.8% (x=0.2) for the (La, Mg)2Ni7 phase, and those of LaNi5 phase increase from 20.2% (x=0) to 37.3% (x=0.2). As for the electrochemical measurements, adding Si and performing annealing treatment have engendered obvious impacts. The cycle stability of the alloys is improved dramatically, being enhanced from 80.3% to 93.7% for the as-annealed (950 °C) alloys with Si content increasing from 0 to 0.2. However, the discharge capacity is reduced by adding Si, from 399.4 to 345.3 mA·h/g as the Si content increases from 0 to 0.2. Furthermore, such addition makes the electrochemical kinetic properties of the alloy electrodes first increase and then decrease. Also, it is found that the overall electrochemical properties of the alloys first augment and then fall with the annealing temperature rising.
机译:通过浇铸和退火制备La-Mg-Ni的A2B7型La0.8mg0.2Ni3.3Co0.2Six(x = 0-0.2)电极合金。系统地研究了附加硅和退火处理对合金结构和电化学性能的影响。 XRD和SEM的分析揭示了铸造和退火的合金具有多相结构,涉及两个主要阶段(La,Mg)2Ni7和Lani5以及一个次要相Lani3。添加Si和退火处理使合金的(La,Mg)2Ni7和Lani5相的相质量和细胞参数的显着变化导致合金而不改变其相位结构。 (La,Mg)2Ni7相的74.3%(x = 0)至57.8%(x = 0.2),Lani5相增加从20.2%(x = 0)增加到37.3%(x = 0.2)。至于电化学测量,添加Si和表演退火处理具有明显的影响。合金的循环稳定性显着提高,从0至0.2的Si含量增加,从80.3%〜93.7%增强了80.3%至93.7%。然而,由于Si含量从0到0.2增加,通过添加Si,通过添加Si来降低放电容量。从0到0.2增加,通过399.4至345.3mA·h / g。此外,这种添加使得合金电极的电化学动力学首先增加然后降低。而且,发现合金的整体电化学性质首先增强,然后随着退火温度上升而下降。

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