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Phase-structure and Hydrogen Storage Behaviors of Mg+10% Ni2P Composite Prepared by Reactive Ball-Milling
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    Abstract:

    Mg+10%Ni2P composite (mass fraction, similarly hereinafter) and pure magnesium samples were prepared by reactive ball-milling under hydrogen atmosphere, and their phase-structure and hydrogen storage behavior were investigated systemically. The results show that the hydrogen absorption/desorption kinetics of pure Mg are markedly improved by adding 10% Ni2P. Furthermore, the catalytically enhanced kinetic property is found to persist in the de-/hydrogenation cycles. The size of crystal grains of the composite is reduced by prolonging the ball-milling time. Ni2P is effective in inhibiting the aggregation of Mg during the de-/hydrogenation processes. The doping of Ni2P can lower the dehydriding temperatures of the hydriding Mg-Ni2P composites.

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[Peng Shuke, Xiao Xuezhang, Hang Zhouming, Wu Fan, Li Changxu, Li Shouquan, Chen Lixin. Phase-structure and Hydrogen Storage Behaviors of Mg+10% Ni2P Composite Prepared by Reactive Ball-Milling[J]. Rare Metal Materials and Engineering,2011,40(8):1387~1391.]
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  • Received:August 23,2010
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