首页> 外文期刊>Electrochimica Acta >Electrochemical hydrogen storage behaviors of as-milled Mg-Ti-Ni-Co-Al-based alloys applied to Ni-MH battery
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Electrochemical hydrogen storage behaviors of as-milled Mg-Ti-Ni-Co-Al-based alloys applied to Ni-MH battery

机译:基于Mg-Ti-Co-Al基合金的电化学储氢行为施加到Ni-MH电池

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In the study, the hydrogen storing materials Mg-Ni-based Mg50-xTixNi45Al3Co2 (x = 0,1, 2, 3, 4) + 50 wt% Ni (named Mg50-xTixNi45Al3Co2 (x = 0-4) + 50Ni) with nanocrystalline and amorphous structures were fabricated by the method of mechanical milling and designed for the negative electrode of Ni-MH batteries. The investigation aims at researching the function of Ti dosage on the electrochemical hydrogen storing characteristics and microstructure of the experimental specimens. The analysis of X-ray diffraction profiles and Scanning Electron Microscope images determines that the experiment specimens contain the major phase Mg2Ni and the minor phase MgNi2. The observation of TEM images reveals a fact that the specimens after ball-milling treatment consist of the nanocrystal and amorphism structures. The electrochemical tests show that as for the samples after ball-milling treatment, the discharge capacities of them gain the utmost value at the first circulate without activation treatment, and the increase of Ti dosage brings on an evident rise in the specimens' discharge capacity and cycle stability. Concretely, as the Ti content alters from 0 to 4, the discharge capacities of the as-milled (20 h) sample increase from 405.0 to 519.4 mAh/g and capacity retention rate of 100th circulate (S-100= C-100/C-max) augments from 45% to 72%. What's more, a series of measurements, such as the high rate discharge ability (HRD), the electrochemical impedance spectrum (EIS) as well as Tafel polarization curves etc. show that the electrochemical kinetics performances of as-milled specimens in this experiment have a trend of increasing first and then decreasing with the addition of Ti element. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在该研究中,氢存储材料Mg-Ni基Mg50-Xtixni45Al3CO2(X = 0.1,2,3,4)+ 50wt%Ni(命名为Mg50-xtixni45Al3Co2(x = 0-4)+ 50ni)通过机械研磨方法制造纳米晶和非晶结构,为Ni-MH电池的负极设计。该研究旨在研究TI剂量对实验标本的电化学氢储存特性和微观结构的功能。 X射线衍射轮廓和扫描电子显微镜图像的分析确定了实验标本含有主要相Mg2Ni和次相MgNI2。 TEM图像的观察显示,球磨处理后的标本由纳米晶体和非形态结构组成。电化学测试表明,对于球磨处理后的样品,它们的放电容量在没有激活治疗的情况下在第一次循环中获得最大值,并且Ti剂量的增加带来了试样的放电容量的显明升高循环稳定性。具体地,随着Ti含量的改变为0至4,AS-MICRED(20小时)样品的放电容量从405.0增加到519.4mah / g和100次循环的容量保持率(S-100 = C-100 / c -max)增长45%至72%。更重要的是,一系列测量,例如高速率放电能力(HRD),电化学阻抗谱(EIS)以及Tafel偏振曲线等,表明该实验中的磨削样品的电化学动力学性能具有a第一次增加的趋势然后通过添加TI元素减少。 (c)2020 elestvier有限公司保留所有权利。

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