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Impacts of melt spinning and Mn replacement on electrochemical hydrogen storage performances of nanocrystalline and amorphous Mg_2Ni-type alloys

机译:熔融纺丝和Mn替代对纳米晶体和无定形Mg_2Ni型合金电化学储氢性能的影响

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The Mg_2Ni-type alloys with a nanocrystalline and amorphous structure have been confirmed possessing superior electrochemical hydrogen storage kinetics. The melt-spinning technique is used to preparing the nanocrystalline and amorphous Mg_2Ni-type alloys with the nominal compositions of Mg_(20)Ni_(10-x)Mn_x (x = 0, ; 3, 4). The impacts of the melt spinning and the replacement of Ni by Mn on the structures and the electrochemical performances of the alloys are investigated systematically. The analysis of the structures by XRD and HRTEM reveals that the replacement of Ni by Mn facilitates the glass formation in the Mg_2Ni-type alloy, and the amorphization degree of the as-spun alloys increases with the growing of the spinning rate. Furthermore, the replacement renders the formation of secondary phases MnNi and Mg instead of altering the Mg_2Ni major phase in the alloys. The measurement of the electrochemical characteristics by an automatic galvanostatic system indicates that the discharge capacity and cycle stability of the alloys dramatically grow with the rising of the spinning rate and the amount of Mn replacement, with which the high rate discharge ability (HRD) of the alloys first augments and then falls.
机译:已经证实了具有纳米晶和无定形结构的Mg_2Ni型合金,具有优异的电化学储氢动力学。熔融纺丝技术用于制备具有Mg_(20)Ni_(10-x)Mn_x(x = 0,3,4)的标称组合物的纳米晶和无定形Mg_2Ni型合金。系统地研究了Mn对熔融纺丝和Ni替代Ni的影响和合金的电化学性能和电化学性能。通过XRD和HRTEM的结构分析显示,MN的替代Ni促进Mg_2Ni型合金中的玻璃形成,并且随着纺纱速率的生长,SA-Spun合金的非晶态度增加。此外,替换使二次相和Mg的形成呈现,而不是改变合金中的Mg_2Ni主相。自动镀锌系统的电化学特性的测量表明,合金的放电容量和循环稳定性随着纺纱速率的上升和Mn替代量而显着地增长,其中高速率放电能力(HRD)合金首次增加,然后落下。

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