首页> 外文期刊>Research on Chemical Intermediates >Electrochemical characterization of negative electrodes consisting of surface-modified Zr0.9Ti0.1(Ni1.1Co0.1Mn0.5V0.2Cr0.1)(x) Laves-phase alloys
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Electrochemical characterization of negative electrodes consisting of surface-modified Zr0.9Ti0.1(Ni1.1Co0.1Mn0.5V0.2Cr0.1)(x) Laves-phase alloys

机译:表面改性Zr0.9Ti0.1(Ni1.1Co0.1Mn0.5V0.2Cr0.1)(x)Laves相合金组成的负极的电化学特性

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摘要

Laves-phase hydrogen storage alloy has a high potential for use as negative electrode material as alternative for the misch-metal-based material. In order to improve the energy density and the rate capability of negative electrode, chemical and mechanical modification of Laves-phase alloy with different stoichiometric ratios was carried out. Discharge capacity and high-rate dischargeabilty was evaluated by electrochemical methods and the characterization of Laves-phase alloy was made by X-ray diffraction, SEM observation and PCT measurement. The best result in discharge capacity could be obtained for stoichiometric Laves-phase alloy with a composition of Zr0.9Ti0.1Ni1.1Co0.1Mn0.5V0.2Cr0.1 by boiling in 10 M KOH solution. On the other hand, the high-rate dischargeabilty was increased remarkably by introducing mechanical grinding before alkali treatment. The cause for improved performance was discussed on the basis of thermodynamic stability of metal hydride and changes in crystal structure and surface morphology influencing on diffusion coefficient and diffusion path length of hydrogen.
机译:Laves相储氢合金具有很高的潜力,可以用作负极材料,替代基于混合金属的材料。为了提高能量密度和负极的倍率能力,对化学计量比不同的拉夫斯相合金进行了化学和机械改性。通过电化学方法评估了放电容量和高倍率放电能力,并通过X射线衍射,SEM观察和PCT测量对Laves相合金进行了表征。通过在10 M KOH溶液中沸腾,可对组成为Zr0.9Ti0.1Ni1.1Co0.1Mn0.5V0.2Cr0.1的化学计量Laves相合金获得最佳的放电容量结果。另一方面,通过在碱处理之前引入机械研磨,高倍率放电能力显着提高。基于金属氢化物的热力学稳定性以及影响氢的扩散系数和扩散路径长度的晶体结构和表面形态的变化,讨论了提高性能的原因。

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