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作 者:彭成红[1] 罗堪昌[1] 曾美琴[1] 张耀[1] 朱敏[1]
机构地区:[1]华南理工大学机械工程学院,广东广州510640
出 处:《电源技术》2003年第B05期151-153,168,共4页Chinese Journal of Power Sources
摘 要:采用先在高温下烧结使元素充分扩散,然后再球磨的两步法制备了一系列的Mg Ni系贮氢合金Mg2Ni、Mg1.7 Al0.3Ni、Mg1.7Ti0.3Ni和Mg1.9Ti0.1Ni0.8Al0.2,研究了将Mg2Ni用Ti、Al部分替换Mg和化学镀对合金电极的影响,并对试样进行了XRD分析和电化学性能测量。结果表明Mg1.7Al0.3Ni合金中形成一种新相,该相具有面心立方结构,晶格常数为0.604nm,Mg1.7Al0.3Ni的电化学容量较高,这应与这种新相的形成有关。这一结论对用两步法制备Mg Ni系贮氢合金有意义。该合金经次磷酸钠作还原剂的碱性化学镀镍后,电化学容量有非常明显的提高,但对循环稳定性的改善不明显。A series of MgNi hydrogen storage alloy, such as Mg2Ni, Mg1.7Al0.3Ni,Mg1.7Ti0.3Ni and Mg1.9Ti0.1Ni0.8Al0.2 were prepared by the twostep method, i.e. sintering metals pellet at high temperature, then mill it to powder. The effects of the chemical plating and partial substitution of Ti and Al for Mg in Mg2Ni on the performance of alloy electrode were discussed. The results of XRD analysis and electrochemical property measurement show that Mg1.7Al0.3Ni has high electrochemical capacity and a new phase is formed in it. The new phase is in facecentered cubic structure and its lattice constant is 0.604 nm. This result is instructional for preparing MgNi hydrogen storage alloy by the twostep method. And the electrochemical capacity of Mg1.7Al0.3Ni is increased obviously by the alkaline electroless plating of nickel, which use sodium hypophosphite as reductant, whereas its cycle life is not improved greatly.
关 键 词:电极材料 MH-NI电池 两步法 制备 Mg-Ni系贮氢合金 表面改性
分 类 号:TM912.2[电气工程—电力电子与电力传动]
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