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ABs-type hydrogen storage alloy used as anodic materials in Ni-MH batteries

机译:镍氢电池中用作阳极材料的ABs型储氢合金

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The performance of a nickel-metal hydride (Ni-MH) battery depends enormously on the characteristics of the negative electrode. The metal hydride LaNi_(3.55)Mn_(0.4)Al_(0.3)Co_(0.4)Fe_(0.35) alloy powder can be used as the negative electrode material. The characteristics of the LaNi_(3.55)Mn_(0.4)Al_(0.3)Co_(0.4)Fe_(0.35), including the polarization resistance, the exchange current density and the equilibrium potential were studied as functions of the number of cycles. The exchange current density of the alloy electrode increases with the increasing number of charge/discharge cycles and then remains almost constant after activation. The increase of the exchange current density is mainly attributed to the increase of the electrocatalytic activity of the LaNi_(3.55)Mn_(0.4)Al_(0.3)Co_(0.4)Fe_(0.35) alloy. The constant potential discharge technique was used to evaluate the diffusion coefficient of hydrogen in the compound at various states of charge (SOC). It is seen that the diffusion coefficient increases with the hydrogen content in the alloy.
机译:镍氢(Ni-MH)电池的性能在很大程度上取决于负极的特性。可以使用金属氢化物LaNi_(3.55)Mn_(0.4)Al_(0.3)Co_(0.4)Fe_(0.35)合金粉末作为负极材料。研究了LaNi_(3.55)Mn_(0.4)Al_(0.3)Co_(0.4)Fe_(0.35)的特性,包括极化电阻,交换电流密度和平衡电势与循环次数的关系。合金电极的交换电流密度随着充电/放电循环次数的增加而增加,然后在激活后几乎保持恒定。交换电流密度的增加主要归因于LaNi_(3.55)Mn_(0.4)Al_(0.3)Co_(0.4)Fe_(0.35)合金的电催化活性的增加。恒电位放电技术用于评估化合物在各种荷电状态(SOC)下氢的扩散系数。可以看出,扩散系数随着合金中氢含量的增加而增加。

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