Structure and electrochemical hydrogen storage characteristics of nanocrystalline and amorphous MgNi-type alloy synthesized by mechanical milling

被引:5
|
作者
Zhang, Yang-huan [1 ,2 ]
Zhang, Wei [2 ]
Yuan, Ze-ming [1 ]
Bu, Wen-gang [2 ]
Qi, Yan [2 ]
Guo, Shi-hai [2 ]
机构
[1] Inner Mongolia Univ Sci & Technol, Key Lab Integrated Exploitat Baiyun Obo Multimet, Baotou 014010, Inner Mongolia, Peoples R China
[2] Cent Iron & Steel Res Inst, Dept Funct Mat Res, Beijing 100081, Peoples R China
基金
中国国家自然科学基金;
关键词
Mg-Ni-based alloy; Ce replacing Mg; Surface modification; Mechanical milling; Electrochemical performance; AS-CAST; ELECTRODE ALLOYS; NI; AL; PERFORMANCES; BEHAVIOR; RE; SUBSTITUTION; KINETICS; PHASE;
D O I
10.1007/s42243-020-00383-3
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Both element substitution and surface modification were utilized to enhance the electrochemical performances of Mg-Ni-based alloys. Nanocrystalline and amorphous Mg1-xCexNi0.9Al0.1 (x = 0-0.08) + 50 wt.% Ni hydrogen storage alloys were synthesized through mechanical milling. The sample alloys show excellent activation property and have good electrochemical hydrogenation and dehydrogenation property at normal temperature. The discharge capacity has a peak value with Ce content varying which is 461.6 mAh/g for 10-h milled alloy, while that of Ce-0.04 alloy augments from 352.6 to 536.9 mAh/g with milling time extending from 5 to 30 h. Cycle stability is conspicuously improved with Ce content and milling duration augment. To be specific, when cycle number is fixed at 100, the capacity retention rate augments from 41% to 72% after Ce dosage rising from 0 to 0.08 for the 10-h milled alloy and from 58% to 76% after milling duration extending from 5 to 30 h for Ce-0.06 alloy. Additionally, the electrochemical kinetics of the alloys own peak values with Ce proportion varying; however, they always rise with milling duration extending.
引用
收藏
页码:952 / 963
页数:12
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