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Charge Transfer and Mass Transfer Reactions in the Metal Hydride Electrode of a Ni/MH Battery

机译:Ni / MH电池金属氢化物电极中的电荷转移和质量转移反应

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Charge transfer reaction across the electrode/electrolyte interface and hydrogen diffusion in the negative MH alloy electrode dominate the high-rate discharge capability of the metal hydride electrode in a Nickel Metal Hydride (Ni/MH) battery. The mass transfer process in the MH electrode mainly involves hydrogen diffusion in the bulk MH alloy. The charge transfer reaction in the negative electrode reflects the capability of hydrogen reduction and oxidation reactions at the surface of the MH alloy powder. In this study, an AB_5-type hydrogen-absorbing alloy was used as the negative electrode material. The rate-determining mass transfer process in the bulk MH alloy electrode was studied and analyzed using anodic polarization measurements. The exchange current density, which is related to the charge transfer reaction, was analyzed by using the hydrogen equilibrium pressure. The estimation of hydrogen diffusion coefficient in the MH alloy is strongly dependent on the value of the effective reaction area of charge transfer reaction at the surface of the alloy powder.
机译:跨电极/电解质界面的电荷转移反应和氢在负极MH合金电极中的扩散决定了镍氢(Ni / MH)电池中金属氢化物电极的高倍率放电能力。 MH电极中的传质过程主要涉及氢在整体MH合金中的扩散。负极中的电荷转移反应反映了MH合金粉末表面氢还原和氧化反应的能力。在本研究中,AB-5型吸氢合金被用作负极材料。研究和分析了MH本体电极中决定速率的传质过程,并使用阳极极化测量对其进行了分析。通过使用氢平衡压力来分析与电荷转移反应有关的交换电流密度。 MH合金中氢扩散系数的估算很大程度上取决于合金粉末表面电荷转移反应的有效反应面积值。

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