Title of article
The role of grain boundaries in the mechanism of plasma immersion hydrogenation of nanocrystalline magnesium films
Author/Authors
L. Pranevicius، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
7
From page
4202
To page
4208
Abstract
In this paper, attention in focused on the nanostructured magnesium films for hydrogen storage. It is shown that 2 mm thick
Mg film is transformed into MgH2 film under high-flux and fluence hydrogen plasma immersion ion implantation at 450 K for
15 min. All hydrogen desorbs at temperature about 530 K, which corresponds to the decomposition of MgH2 ! Mg + H2". The
macroscopic and microscopic observations show that magnesium film undergoes a high deformation and restructuring during
hydrogenation–dehydrogenation reaction. The suggested hydrogenation model is based upon the incorporation of excess of
hydrogen atoms in grain boundaries of nanocrystalline Mg film driven by the increase in surface chemical potential associated
with the implantation flux. The results provide new aspects of hydriding of thin nanocrystalline film materials under highly nonequalibrium
conditions on the surface.
Keywords
Mg films , GRAIN BOUNDARIES , Plasma immersion ion implantation , Hydrogen storage
Journal title
Applied Surface Science
Serial Year
2006
Journal title
Applied Surface Science
Record number
1001972
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