Nanoscale Grain Refinement and H-Sorption Properties of MgH2 Processed by High-Pressure Torsion and Other Mechanical Routes

被引:76
作者
Leiva, Daniel Rodrigo [1 ]
Jorge, Alberto Moreira [1 ]
Ishikawa, Tomaz Toshimi [1 ]
Huot, Jacques [2 ]
Fruchart, Daniel [3 ]
Miraglia, Salvatore [3 ]
Kiminami, Claudio Shyinti [1 ]
Botta, Walter Jose [1 ]
机构
[1] Univ Fed Sao Carlos, Dept Mat Engn, BR-13565905 Sao Carlos, SP, Brazil
[2] Univ Quebec, Inst Rech Hydrogene, Trois Rivieres, PQ G9A 5H7, Canada
[3] CNRS, Inst Neel, Dept Matiere Condensee, F-38042 Grenoble 9, France
基金
巴西圣保罗研究基金会;
关键词
HYDROGEN STORAGE; MAGNESIUM ALLOY; NI; FE; NANOPARTICLES; CATALYSTS; KINETICS; SYSTEMS; POWDERS; NB2O5;
D O I
10.1002/adem.201000030
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
MgH2 is a promising material for solid-state hydrogen storage due to its high gravimetric and volumetric storage capacity and its relatively low cost. Severe plastic deformation (SPD) processing techniques are being explored as an alternative to high-energy ball-milling (HEBM) in order to obtain more air resistant materials and reduce processing times. In this work, Mg, MgH2, and MgH2-Fe mixtures were severely mechanically processed by different techniques such as high-pressure torsion (HPT), extensive cold forging, and cold rolling. A very significant grain refinement was achieved when using MgH2 instead of Mg as raw material. The mean crystallite sizes observed ranged from 10 to 30 nm, depending on the processing conditions. Enhanced H-sorption properties were observed for the MgH2-based nanocomposites processed by HPT when compared with MgH2 mixtures. Additionally, cold forging and cold rolling also proved effective in nanostructuring MgH2. These results suggest a high potential for innovative application with the use of low cost mechanical processing routes to produce Mg-based nanomaterials with attractive hydrogen storage properties.
引用
收藏
页码:786 / 792
页数:7
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