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Electrochemical Hydrogen Storage Characteristics of Spun Nanocrystalline/Amorphous Mg2-xLaxNi (x=0-0.6) Alloys
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    Abstract:

    Mg2Ni-type Mg2-xLaxNi (x=0, 0.2, 0.4, 0.6) hydrogen storage alloys were prepared by casting and rapid quenching, respectively. The microstructures of the as-cast and quenched alloys were studied by XRD, SEM and HRTEM. Results show that no amorphous phase forms in the as-quenched La-free alloy, but the as-quenched alloys containing La hold a major amorphous phase. Thermal stability of the as-quenched alloys was studied by DSC, and the results show that La content and the quenching rate induce a negligible influence on the crystallization temperature of the amorphous phase. The electrochemical measurement shows that the discharge capacity of the as-cast alloys grows with the increase of La content, while the as-quenched alloys obtain the maximum discharge capacities with the variation of La content. The substitution of La for Mg markedly enhances the cycle stability of the as-cast and quenched alloys

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[Zhang Yanghuan, Ma Zhihong, Zhao Dongliang, Ren Huiping, Guo Shihai, Wang Xinlin. Electrochemical Hydrogen Storage Characteristics of Spun Nanocrystalline/Amorphous Mg2-xLaxNi (x=0-0.6) Alloys[J]. Rare Metal Materials and Engineering,2011,40(9):1648~1652.]
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  • Received:September 10,2010
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