Magnesium is an attractive hydrogen storage candidate due to its high gravimetric and volumetric storage capacities (7.6 wt.% and 110 gH2/l, respectively). Unfortunately, its use as a storage material for hydrogen is hampered by the high stability of its hydride, its high dissociation temperature of 573–673 K and its slow reaction kinetics. In order to overcome those drawbacks, an important advancement toward controlling the enthalpy and desorption temperatures of nano-structured MgH2 thin films via stress/strain and size effects is presented in this paper, as the effect of the nano-structuring of the bulk added to a biaxial strain on the hydrogen storage properties has not been previously investigated. Our results show that the formation h...
The discovery of new hydrogen storage materials has greatly driven the entire hydrogen storage techn...
Magnesium hydride (MgH2) is a well known hydrogen storage material. It has a low weight, high abunda...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Using hydrogenography, we investigate the thermodynamic parameters and hysteresis behavior in Mg thi...
In this paper, attention in focused on the nanostructured magnesium films for hydrogen storage.It is...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
Hydrogen desorption process of Pd-capped magnesium hydride thin films of different thicknesses was i...
In this paper, attention is focused on the nanostructured magnesium films for hydrogen storage. It i...
Magnesium hydride is cheap and contains 7.7 wt % hydrogen, making it one of the most attractive hydr...
The aim of this thesis is to study the thermodynamics of hydrogenation of nanoconfined magnesium wit...
Energy systems of the foreseeable future will have to be more reliable, flexible and cost-efficient ...
MgH2 with the α tetragonal structure was plastically strained using the high-pressure torsion (HPT) ...
In this paper, attention in focused on the nanostructured magnesium films for hydrogen storage. It i...
Free-standing magnesium–nickel (Mg–Ni) films with extensive nanoscale grain structures were fabricat...
The discovery of new hydrogen storage materials has greatly driven the entire hydrogen storage techn...
Magnesium hydride (MgH2) is a well known hydrogen storage material. It has a low weight, high abunda...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Using hydrogenography, we investigate the thermodynamic parameters and hysteresis behavior in Mg thi...
In this paper, attention in focused on the nanostructured magnesium films for hydrogen storage.It is...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
Hydrogen desorption process of Pd-capped magnesium hydride thin films of different thicknesses was i...
In this paper, attention is focused on the nanostructured magnesium films for hydrogen storage. It i...
Magnesium hydride is cheap and contains 7.7 wt % hydrogen, making it one of the most attractive hydr...
The aim of this thesis is to study the thermodynamics of hydrogenation of nanoconfined magnesium wit...
Energy systems of the foreseeable future will have to be more reliable, flexible and cost-efficient ...
MgH2 with the α tetragonal structure was plastically strained using the high-pressure torsion (HPT) ...
In this paper, attention in focused on the nanostructured magnesium films for hydrogen storage. It i...
Free-standing magnesium–nickel (Mg–Ni) films with extensive nanoscale grain structures were fabricat...
The discovery of new hydrogen storage materials has greatly driven the entire hydrogen storage techn...
Magnesium hydride (MgH2) is a well known hydrogen storage material. It has a low weight, high abunda...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...