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Performance evaluation of LaNi_(4.7)Al_(0.3) and LaNi_5 electrodes used as anodes in nickel/metal hydride secondary batteries by analysis of current transients

机译:通过分析电流瞬变来评估用作镍/金属氢化物二次电池阳极的LaNi_(4.7)Al_(0.3)和LaNi_5电极的性能

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摘要

The performance of LaNi_(4.7)Al_(0.3) and LaNi_5 porous electrodes used as anode in nickel/metal hydride secondary batteries has been evaluated by analysis of current decay transients. From the measured three-staged current decay transients for the hydrogen transport through both electrodes in the coexistence of two hydride phases, the discharge capacity and beta- to alpha-phase transition time were determined. The optimum charging condition and velocity of alpha/beta phase boundary movement are discussed with respect to the experimentally obtained discharge capacity and transition time. The potentiostatic current decay transient technique is more conveniently employed to establish the optimum charging condition, as compared with the usual galvanostatic charge-discharge technique.
机译:通过分析电流衰减瞬变,评估了用作镍/金属氢化物二次电池阳极的LaNi_(4.7)Al_(0.3)和LaNi_5多孔电极的性能。根据在两个氢化物相共存下氢通过两个电极传输的三阶段电流衰减瞬变,确定了放电容量和β相到α相的过渡时间。相对于实验获得的放电容量和过渡时间,讨论了最佳的充电条件和α/β相界移动的速度。与通常的恒电流充放电技术相比,恒电位电流衰减瞬变技术更方便地用于建立最佳充电条件。

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