首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrochemical hydrogen storage capacities of Mg_2Ni and MgNi alloys synthesized by mechanical alloying
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Electrochemical hydrogen storage capacities of Mg_2Ni and MgNi alloys synthesized by mechanical alloying

机译:机械合金化合成Mg_2Ni和MgNi合金的电化学储氢能力

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摘要

Mg_2Ni and MgNi alloys were synthesized by the mechanical alloying and their electrochemical hydrogen storage characteristics were investigated. The XRD peaks indicated that MgNi alloy was mainly in the amorphous characteristics while Mg_2Ni alloy was composed of mixture of amorphous and nano-crystalline structures. The development of the amorphous structure in MgNi alloy was very fast and the maximum storage capacity was reached at 15 h ball milling. The maximum storage capacity of Mg_2Ni alloy was observable after at least 40 h ball milling. Both the initial discharge capacity and capacity retention rate of MgNi alloy were much greater than those of Mg_2Ni alloy. This observation was mainly attributed to the relatively reversible charge/discharge behavior of MgNi alloy. The charge transfer resistance of Mg_2Ni alloy was greater than that of MgNi alloy especially at the higher depths of discharges. The presence of free electro-catalytically active Ni particles on MgNi alloy surface was thought as the main reason for the facilitated hydrogen charge transfer reactions on this alloy.
机译:通过机械合金化合成了Mg_2Ni和MgNi合金,并研究了它们的电化学储氢特性。 XRD峰表明,MgNi合金主要为非晶态,而Mg_2Ni合金则为非晶态和纳米晶的混合物。 MgNi合金中非晶态结构的发展非常迅速,球磨15 h达到了最大存储容量。球磨至少40 h后可观察到Mg_2Ni合金的最大储存容量。 MgNi合金的初始放电容量和容量保持率均远大于Mg_2Ni合金。该观察结果主要归因于MgNi合金的相对可逆的充电/放电行为。 Mg_2Ni合金的电荷转移电阻大于MgNi合金,特别是在较高的放电深度时。 MgNi合金表面上存在自由的电催化活性Ni颗粒被认为是促进该合金上氢电荷转移反应的主要原因。

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