Microstructure and hydrogen storage properties of melt-spun Mg-Cu-Ni-Y alloys

被引:82
|
作者
Kalinichenka, Siarhei [2 ]
Roentzsch, Lars [1 ]
Riedl, Thomas [2 ]
Gemming, Thomas [3 ]
Weissgaerber, Thomas [1 ]
Kieback, Bernd [1 ,2 ]
机构
[1] Fraunhofer Inst Mfg Technol & Adv Mat IFAM, D-01277 Dresden, Germany
[2] Tech Univ Dresden, Inst Mat Sci, D-01069 Dresden, Germany
[3] IFW Dresden, D-01171 Dresden, Germany
关键词
Hydrogen storage material; Metal hydride; Magnesium alloy; Melt spinning; Nanocrystallinity; Electron energy loss spectroscopy; CRYSTALLIZATION HEAT-TREATMENT; SORPTION; KINETICS; HYDRIDES; BEHAVIORS; MAGNESIUM;
D O I
10.1016/j.ijhydene.2010.10.099
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Microstructoral and hydrogen storage properties of three nanocrystalline melt-spun Mg-base alloys (Mg90Cu2.5Ni2.5Y5, Mg85Cu5Ni5Y5 and Mg80Cu5Ni5Y10) have been investigated in view of their application as reversible hydrogen storage materials. The activation procedure and the hydrogen sorption kinetics of these alloys were studied by thermogravimetry at different temperatures in the range from 100 C to 380 degrees C. It has been found that these alloys can reach reversible gravimetric hydrogen storage densities of up to 4.8 wt.%-H-2. Even at a low temperature of 100 degrees C, the hydrogenation kinetics of the investigated alloys is rather high in the range of 1.5 wt.%-H-2 per hour. In the hydrogenated state, these alloys consist of MgH2, high temperature Mg2NiH4, Mg2NiH0.3, YH2, YH3 as well as MgCu2. The presence of MgCu2 indicates the reaction of Mg2Cu with hydrogen. After repeated hydrogenation/dehydrogenation the preservation of a nanocrystalline grain structure has been confirmed by scanning electron microscopy, energy-filtered and conventional transmission electron microscopy. Additionally, the distribution of hydrogen in the hydrogenated sample was mapped by means of electron energy loss spectroscopy. (C) 2010 Professor T. Nejat Veziroglu. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:1592 / 1600
页数:9
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