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Investigation on the Structure and Electrochemical Properties of La-Ce-Mg-Al-Ni Hydrogen Storage Alloy

机译:La-Ce-Mg-Al-Ni储氢合金结构和电化学性能的研究

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摘要

Structure and electrochemical characteristics of La0.96Ce0.04Mg0.15Al0.05Ni2.8 hydrogen storage alloy have been investigated. X-ray diffraction analyses reveal that the La0.96Ce0.04Mg0.15Al0.05Ni2.8 hydrogen storage alloy consisted of a (La, Mg)Ni3 phase with the rhombohedral PuNi3-type structure and a LaNi5 phase with the hexagonal CaCu5-type structure. TEM shows that the alloy is multicrystal with a lattice space 0.187 nm. EDS analyse shows that the content of Mg is 3.48% (atom) which coincide well with the designed composition of the electrode alloy. Electrochemical investigations show that the maximum discharge capacity of the alloy electrode is 325 mAh g−1. The alloy electrode has higher discharge capacity within the discharge current density span from 60 mA g−1 to 300 mA g−1. Electrochemical impedance spectroscopy measurements indicate that the charge transfer resistance RT on the alloy electrode surface and the calculated exchange current density I0 are 0.135 Ω and 1298 mA g−1, respectively; the better eletrochemical reaction kinetic of the alloy electrode may be responsible for the better high-rate dischargeability.
机译:La0.96Ce0.04Mg0.15Al0.05Ni2.8储氢合金的结构和电化学特性进行了研究。 X射线衍射分析表明,该La0.96Ce0.04Mg0.15Al0.05Ni2.8储氢合金由一个(LA,Mg)的的Ni3相位与所述菱形PuNi3型结构,并与六方晶系CaCu5型结构的LaNi5相的。 TEM显示,该合金是多晶体有晶格空间0.187纳米。 EDS分析表明,Mg的含量为3.48%(原子),其与所述电极合金的设计组成吻合较好。电化学研究表明,该合金电极的最大放电容量为325毫安时G-1。合金电极具有的放电电流密度跨度从60毫安G-1 300 mA的G-1内的较高的放电容量。电化学阻抗谱测量表明,电荷转移电阻RT的合金电极表面上,并且所计算的交换电流密度I0 0.135Ω和1298毫安G-1,分别是;合金电极的更好eletrochemical反应动力学可负责更好的高倍率放电。

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