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首页> 外文期刊>Electrochimica Acta >The electrochemical performance of a La-Mg-Ni-Co-Mn metal hydride electrode alloy in the temperature range of -20 to 30℃
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The electrochemical performance of a La-Mg-Ni-Co-Mn metal hydride electrode alloy in the temperature range of -20 to 30℃

机译:La-Mg-Ni-Co-Mn金属氢化物电极合金在-20至30℃温度范围内的电化学性能

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摘要

The effect of temperature on the overall electrochemical properties of La{sub}0.7Mg{sub}0.3Ni{sub}2.875Co{sub}0.525Mn{sub}0.1 hydrogen storage alloy has been studied systematically. The results show that temperature has a striking effect on the overall electrochemical properties, especially the electrochemical kinetic performance. The maximum discharge capacity and the high rate dischargeability (HRD) of La{sub}0.7Mg{sub}0.3Ni{sub}2.875Co{sub}0.525Mn{sub}0.1 alloy electrode both decrease with decreasing test temperature, mainly due to the slower hydrogen transfer in the bulk of the alloy and the lower electrocatalytic activity at lower temperatures. Detailed studies on the temperature effect on the polarization resistance (R{sub}D), the exchange current density (I{sub}0), the limiting current density (I{sub}L) and the hydrogen diffusion coefficient (D), indicate that the diffusion of hydrogen in the bulk for La-Mg-Ni-Co system hydrogen storage alloy electrodes is the rate-determining factor for the discharge process of the alloy electrode for the temperature over 10℃ and the charge-transfer reaction is rate-determining step at lower temperature.
机译:研究了温度对La {sub} 0.7Mg {sub} 0.3Ni {sub} 2.875Co {sub} 0.525Mn {sub} 0.1储氢合金整体电化学性能的影响。结果表明,温度对整体电化学性能,特别是电化学动力学性能具有显着影响。 La {sub} 0.7Mg {sub} 0.3Ni {sub} 2.875Co {sub} 0.525Mn {sub} 0.1合金电极的最大放电容量和高倍率放电率(HRD)均随测试温度的降低而降低,这主要是由于氢在合金主体中的转移较慢,在较低温度下的电催化活性较低。温度对极化电阻(R {sub} D),交换电流密度(I {sub} 0),极限电流密度(I {sub} L)和氢扩散系数(D)的影响的详细研究,表明La-Mg-Ni-Co系储氢合金电极中氢在本体中的扩散是温度超过10℃时合金电极放电过程的速率决定因素,电荷转移反应为速率-确定较低温度下的步骤。

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