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The effect of the discharge rate on the electrochemical properties of AB3-type hydrogen storage alloy as anode in nickel-metal hydride batteries

机译:放电速率对镍氢电池AB3型储氢合金阳极电化学性能的影响

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In this work, the ternary CeY2Ni9 alloy was prepared and served as anode materials in the Ni MH battery system. The effect of the discharge rate on the electrochemical proprieties of CeY2Ni9, such as activation capability, polarization, discharge capacities, hydrogen atomic diffusion capability and redox parameters, were also investigated systematically during activation and long cycling. Charge-discharge measurement showed that this alloy is characterized by fast activation and requires only three cycles to be activated regardless of the discharge rate, the maximum discharge capacity was obtained for the medium discharge rate (C/10). An important correlation was observed between the evolution of the electrochemical parameters and that of the kinetic parameters, such as the hydrogen atomic diffusion capability and the exchange current density.
机译:在这项工作中,制备了三元CeY2Ni9合金,并将其用作Ni MH电池系统的阳极材料。在活化和长循环过程中,还系统地研究了放电速率对CeY2Ni9电化学性能的影响,如活化能力,极化,放电容量,氢原子扩散能力和氧化还原参数。充放电测量表明,该合金具有快速活化的特征,并且与放电速率无关,仅需要激活三个循环,对于中等放电速率(C / 10)可获得最大放电容量。在电化学参数的演变和动力学参数的演变之间观察到重要的相关性,例如氢原子的扩散能力和交换电流密度。

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