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The Structure and hydrogen storage properties of La(1-x)MgxNi4.25Al0.75(x=0.0-0.3) Alloys
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1.ShanghaiInstitute of Applied Physics,Chinese Academy of Sciences;2.Yangzhou University;3.ShangHai Institute of Applied Physics,Chinese Academy of Sciences

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    Abstract:

    La(1-x)MgxNi4.25Al0.75 (x=0.0, 0.1, 0.2, 0.3) hydrogen storage alloys were synthesized by means of a three-step induction melting. Their crystal structures and hydrogen storage properties were investigated in the present work. Studies inform that alloys with x=0.0 and 0.1 Mg contain a single LaNi4Al phase, however, those alloys with x=0.2 and 0.3 are composed of LaNi4Al, (La,Mg)Ni3 and AlNi3 phases. With x increasing from 0.2 to 0.3, the abundances of the secondary phases and the plateau pressures in the pressure-composition isotherms are lifted significantly. Meanwhile, their hydrogen storage capacities are remarkably reduced. The alloy with x=0.1 possesses the fastest absorption kinetics compared to the other alloys as well as a good hydrogen capacity and a low plateau pressure.

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[Lvlijun, ChengHonghui, Li XiaoLin. The Structure and hydrogen storage properties of La(1-x)MgxNi4.25Al0.75(x=0.0-0.3) Alloys[J]. Rare Metal Materials and Engineering,2016,45(1):56~61.]
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History
  • Received:November 10,2014
  • Revised:April 23,2015
  • Adopted:June 11,2015
  • Online: January 04,2019
  • Published: