首页> 外文期刊>International journal of hydrogen energy >Structure and electrochemical properties of (La_(1-x)DY_x)_(0.8)Mg_(0.2)Ni_3.4Al_(0.1)(x = 0.0-0.20) hydrogen storage alloys
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Structure and electrochemical properties of (La_(1-x)DY_x)_(0.8)Mg_(0.2)Ni_3.4Al_(0.1)(x = 0.0-0.20) hydrogen storage alloys

机译:(La_(1-x)DY_x)_(0.8)Mg_(0.2)Ni_3.4Al_(0.1)(x = 0.0-0.20)储氢合金的结构和电化学性能

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摘要

The structure and electrochemical characteristics of (La_(1-x)DY_x)_(0.8)Mg_(0.2)Ni_(3.4)Al_(0.1)(x = 0.20 hydrogen storage alloys have been investigated. Dysprosium was adopted as a partial substitution element for lanthanum in order to improve electrochemical properties. The XRD, SEM and EDX results showed that the alloys were composed of (La, Mg)_2Ni_7, LaNi_5 and (La, Mg)Ni_2 phases. The introduction of Dy promoted the formation of (La, Mg)_2Ni_7 phase which possesses high hydrogen storage capacity, and controlling dysprosium content at 0.05 can obtain the maximum (La, Mg)_2Ni-7 phase abundance in the alloys. The maximum discharge capacity was heightened from 382.5 to 390.2 mAh/g, which was ascribed to (La, Mg)_2Ni_7 phase abundance increasing from 54.8% to a maximum (60.5%). Also, the biggest discharge capacity retention remained 82.7% after 100 cycles at discharge current density of 300 mA/g.
机译:研究了(La_(1-x)DY_x)_(0.8)Mg_(0.2)Ni_(3.4)Al_(0.1)(x = 0.20)储氢合金的结构和电化学特性,采用Dy作为部分取代元素XRD,SEM和EDX结果表明,合金由(La,Mg)_2Ni_7,LaNi_5和(La,Mg)Ni_2相组成,Dy的引入促进了(La)的形成。 ,具有较高的储氢能力,并且将含量控制在0.05时,Mg)_2Ni_7相可以在合金中获得最大的(La,Mg)_2Ni-7相丰度,最大放电容量从382.5提高到390.2 mAh / g, (La,Mg)_2Ni_7相的丰度从54.8%增加到最大值(60.5%),并且在300 mA / g的放电电流密度下经过100次循环后最大的放电容量保持率仍为82.7%。

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