Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1622650 | Journal of Alloys and Compounds | 2009 | 7 Pages |
Abstract
The thermal behaviour of melt-spun and of electrochemically H2 pre-charged Mg85.7Ni14.3 ribbons was investigated under 0.05 MPa He atmosphere and under 0.5 MPa H2 gas. The crystallisation of the Mgâ¼6Ni phase from the melt-spun amorphous pre-cursor is diffusion-controlled under the different atmospheres. Under He the Mgâ¼6Ni phase is observed between 140 °C â¤Â TA â¤Â 310 °C (TA = annealing temperature) with an average crystallite size of D â 53 ± 12 nm. The Mgâ¼6Ni phase shows the cubic Mg6Pd-type-structure with 84.8-86.6 at.% Mg in the unit cell and 20.012 ± 0.002 Ã
 â¤Â a â¤Â 20.037 ± 0.002 Ã
in dependence on TA and the annealing time tA. The lattice parameters of Mgâ¼6Ni were estimated using the Rietveld refinement of the XRD pattern after annealing at TA = 140 °C and tA = 100 h. Under H2 atmosphere and also after an electrochemical pre-charging the Mg concentration decreases drastically to 80-83 at.% in the Mgâ¼6Ni unit cell. A lattice constant of a = 20.000 ± 0.002 Ã
and a grain size of D â 20 ± 2 nm were found. A chemical disorder in the unit cell is assumed. Interstitial H2 absorption is not observed. The phase reaction of Mgâ¼6Ni with H2 starts already at TA = 180° with the formation of the orthorhombic high-pressure modification γ-MgH2. The transformation enthalpy of γ-MgH2 into β-MgH2 was determined with ÎH = 46.33 kJ/mol and the desorption enthalpy of β-MgH2 with ÎH = 74.56 kJ/mol. The electrochemical charging of the melt-spun ribbons yields a maximum H2 content of 0.33 wt.% and leads to the same thermal behaviour, that was observed under the H2 gas.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
A. Teresiak, M. Uhlemann, J. Thomas, A. Gebert,