Magnesium and its alloys have shown a great potential in effective hydrogen storage due to their advantages of high volumetric/gravimetric hydrogen storage capacity and low cost. However, the use of these materials in fuel cells for automotive applications at the present time is limited by high hydrogenation temperature and sluggish sorption kinetics. This paper presents the recent results of design and development of magnesium-based nanocomposites demonstrating the catalytic effects of carbon nanotubes and transition metals on hydrogen adsorption in these materials. The results are promising for the application of magnesium materials for hydrogen storage, with significantly reduced absorption temperatures and enhanced ab/desorption kinetic...
The development of effective hydrogen storage technologies remains a key technical challenge to the ...
Synergistic effect of metallic couple and carbon nanotubes on Mg results in an ultrafast kinetics of...
Hydrogen storage nanocomposites prepared by high energy reactive ball milling of magnesium and vanad...
Magnesium and its alloys have shown a great potential in effective hydrogen storage due to their adv...
Magnesium and its alloys have shown a great potential in effective hydrogen storage due to their adv...
This paper reports a study on nanostructured magnesium composites with carbon nanotubes (CNTs) and c...
This paper reports a study on nanostructured magnesium composites with carbon nanotubes (CNTs) and c...
This paper reports a study on nanostructured magnesium composites with carbon nanotubes (CNTs) and c...
This work investigates the effect of carbon nanotubes (CNTs) on hydrogen ad/desorption when formed n...
Mg (MgH2)-based composites, using carbon nanotubes (CNTs) and pre-synthesized titanium based complex...
Hydrogen storage in traditional metallic hydrides can deliver about 1.5 to 2.0 wt pct hydrogen but m...
For sustainable development, the resources of the earth need to be maintained and carbon dioxide emi...
Hydrogen is an energy carrier that can be a sustainable solution for alternative energy with zero gr...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Magnesium is a promising hydrogen storage material with high capacity and low cost, but suffers from...
The development of effective hydrogen storage technologies remains a key technical challenge to the ...
Synergistic effect of metallic couple and carbon nanotubes on Mg results in an ultrafast kinetics of...
Hydrogen storage nanocomposites prepared by high energy reactive ball milling of magnesium and vanad...
Magnesium and its alloys have shown a great potential in effective hydrogen storage due to their adv...
Magnesium and its alloys have shown a great potential in effective hydrogen storage due to their adv...
This paper reports a study on nanostructured magnesium composites with carbon nanotubes (CNTs) and c...
This paper reports a study on nanostructured magnesium composites with carbon nanotubes (CNTs) and c...
This paper reports a study on nanostructured magnesium composites with carbon nanotubes (CNTs) and c...
This work investigates the effect of carbon nanotubes (CNTs) on hydrogen ad/desorption when formed n...
Mg (MgH2)-based composites, using carbon nanotubes (CNTs) and pre-synthesized titanium based complex...
Hydrogen storage in traditional metallic hydrides can deliver about 1.5 to 2.0 wt pct hydrogen but m...
For sustainable development, the resources of the earth need to be maintained and carbon dioxide emi...
Hydrogen is an energy carrier that can be a sustainable solution for alternative energy with zero gr...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Magnesium is a promising hydrogen storage material with high capacity and low cost, but suffers from...
The development of effective hydrogen storage technologies remains a key technical challenge to the ...
Synergistic effect of metallic couple and carbon nanotubes on Mg results in an ultrafast kinetics of...
Hydrogen storage nanocomposites prepared by high energy reactive ball milling of magnesium and vanad...