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1)  Ball-milled Mg-based hydrogen storage electrode alloys
球磨Mg基贮氢电极合金
2)  La-Mg-Ni based hydrogen storage electrode alloys
La-Mg-Ni系贮氢电极合金
1.
In the thesis, based on the review of the research and development of the PuNi_3 type La-Mg-Ni based hydrogen storage electrode alloys, the La_2Mg(Ni_(0.
本文在对国内外PuNi_3型La-Mg-Ni系贮氢电极合金的研究进展进行全面综述的基础上,选择具有高放电容量的La_2Mg(Ni_(0。
3)  Mg based hydrogen storage alloy
Mg基贮氢合金
1.
The improvement of the nano structure,nano catalysis and nano composite on the hydriding kinetics of Mg based hydrogen storage alloys is summarized and it is suggested that mechanical alloying is a very effective method to reach the goa
本文概述了纳米结构、纳米催化和纳米复合对Mg基贮氢合金动力学性能的改善 ,指出机械合金化是改善Mg基贮氢合金动力学性能的有效方法。
4)  R–Mg–Ni-based hydrogen storage alloys
R–Mg–Ni基贮氢合金
1.
In this paper, the effect of modification of the additives on electrochemical properties of R–Mg–Ni-based hydrogen storage alloys was studied.
本文研究了在电解液中添加金属氧化物和在电极合金中添加金属粉末及稀土氧化物处理对R–Mg–Ni基贮氢合金La_(0。
5)  Ml–Mg–Ni-based Hydrogen storage alloy
Ml–Mg–Ni基贮氢合金
6)  hydrogen storage electrode alloys
贮氢电极合金
1.
Effects of substitution of Nd for La on properties of La-Mg-Ni system A_2B_7-type hydrogen storage electrode alloys;
Nd替代La对La-Mg-Ni系A_2B_7型贮氢电极合金性能的影响
2.
4 hydrogen storage electrode alloys were prepared by cold crucible melting under argon gas atmosphere.
4贮氢电极合金,采用XRD、三电极体系及SEM研究相结构、电化学性能及电极的表面状态。
3.
6) hydrogen storage electrode alloys were prepared by cold crucible levitation melting under argon gas atmosphere.
6)贮氢电极合金,采用FESEM,EDS,XRD,p-c-t测试及三电极电化学性能测试研究合金的相成分、相结构、p-c-t曲线和电化学性能。
补充资料:钛铁贮氢合金
分子式:
CAS号:

性质:一种性能优良、成本低廉的贮氢材料。它吸氢量大,含氢重量比为1.8%,吸放氢迅速,这些优点对其应用十分有利。不足之处是活化困难,须加热到250℃以上作反复的充氢——抽空操作,另外抗中毒能力差。这些缺点可以通过Mn、Co等合金化加以改善。TiFe合金已在氢的贮存净化、氢压机等领域获得应用。

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