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Electrochemical characterization of LaNi_(5-x)A_x (x = 0.1-0.5) in the absence of additives

机译:在没有添加剂的情况下LaNi_(5-x)A_x(x = 0.1-0.5)的电化学表征

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摘要

The electrochemical performance of LaNi_(5-x)Al_x (x = 0.1-0.5) hydrogen storage alloys was quickly and systematically evaluated by powder microelectrode (PME) technique. X-ray diffraction (XRD) and X-ray photo-electron spectroscopy (XPS) studies were also carried out for a better understanding of the effect of Al partial substitution for Ni on the alloy's performance. PME study results show that Al partial substitution for Ni improves both the cycling performance and the anti-electro-oxidation ability of the alloys; however, it prolongs the alloy activation process, decreases the maximum discharge ability and enhances the polarization of the alloy electrode. The alloy decay mainly behaves as the capacity reduction with the time, but the maximum discharge ability almost keeps constant during the service life. The changes of both the physical and the chemical properties of the alloys resulted from Al partial substitution for Ni are the main factors which lead to the changes of the electrochemical performance of the alloys.
机译:LaNi_(5-x)Al_x(x = 0.1-0.5)储氢合金的电化学性能通过粉末微电极(PME)技术快速而系统地评估。还进行了X射线衍射(XRD)和X射线光电子能谱(XPS)研究,以更好地了解Al部分替代Ni对合金性能的影响。 PME研究结果表明,Al替代Ni可同时改善合金的循环性能和抗电氧化能力。然而,它延长了合金活化过程,降低了最大放电能力并增强了合金电极的极化。合金的衰变主要表现为随着时间的推移容量减少,但是最大放电能力在使用寿命期间几乎保持恒定。 Al部分替代Ni导致合金的物理和化学性质的变化是导致合金电化学性能变化的主要因素。

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