Mg-Ti nanostructured samples with different Ti contents were prepared via compaction of nanoparticles grown by inert gas condensation with independent Mg and Ti vapour sources. The growth set-up offered the option to perform in situ hydrogen absorption before compaction. Structural and morphological characterisation was carried out by X-ray diffraction, energy dispersive spectroscopy and electron microscopy. The formation of an extended metastable solid solution of Ti in hcp Mg was detected up to 15 at% Ti in the as-grown nanoparticles, while after in situ hydrogen absorption, phase separation between MgH2 and TiH2 was observed. At a Ti content of 22 at%, a metastable Mg-Ti-H fcc phase was observed after in situ hydrogen absorption. The co-...
The effect of titanium on magnesium nanoparticle formation is investigated in relation to the import...
This work focuses on improving the thermal stability of Mg nanoparticles (NPs) for use in hydrogen s...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...
Mg-Ti nanostructured samples with different Ti contents were prepared via compaction of nanoparticle...
none3noWe study the kinetics of hydrogen sorption in Mg-Ti-H nanoparticles prepared by gas phase con...
The use of Mg as hydrogen storage material is hampered by slow sorption kinetics and high thermodyna...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
none5siMgH2, MgH2-TiH2 nanocomposites and their deuterated analogues have been obtained by reactive ...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
In order to improve the hydrogen sorption kinetics of Mg at room temperature, the Mg-9.2wt%TiH1.971-...
We report on the hydrogen storage behaviour of Mg nanoparticles (NPs) (size range 100 nm\u20131 um) ...
Inert gas condensation was employed to prepare nanoparticles of Mg and MgH2 which morphology, cluste...
Reversible hydrogen sorption coupled with the MgH2 <-> Mg phase transformation was achieved in...
International audienceMagnesium is a remarkable hydrogen storage material due to its ability to reve...
Microstructure refinement and synergic coupling among different phases are currently explored strate...
The effect of titanium on magnesium nanoparticle formation is investigated in relation to the import...
This work focuses on improving the thermal stability of Mg nanoparticles (NPs) for use in hydrogen s...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...
Mg-Ti nanostructured samples with different Ti contents were prepared via compaction of nanoparticle...
none3noWe study the kinetics of hydrogen sorption in Mg-Ti-H nanoparticles prepared by gas phase con...
The use of Mg as hydrogen storage material is hampered by slow sorption kinetics and high thermodyna...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
none5siMgH2, MgH2-TiH2 nanocomposites and their deuterated analogues have been obtained by reactive ...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
In order to improve the hydrogen sorption kinetics of Mg at room temperature, the Mg-9.2wt%TiH1.971-...
We report on the hydrogen storage behaviour of Mg nanoparticles (NPs) (size range 100 nm\u20131 um) ...
Inert gas condensation was employed to prepare nanoparticles of Mg and MgH2 which morphology, cluste...
Reversible hydrogen sorption coupled with the MgH2 <-> Mg phase transformation was achieved in...
International audienceMagnesium is a remarkable hydrogen storage material due to its ability to reve...
Microstructure refinement and synergic coupling among different phases are currently explored strate...
The effect of titanium on magnesium nanoparticle formation is investigated in relation to the import...
This work focuses on improving the thermal stability of Mg nanoparticles (NPs) for use in hydrogen s...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...