Magnesium-based alloys attract significant interest as cost-efficient hydrogen storage materials allowing the combination of high gravimetric storage capacity of hydrogen with fast rates of hydrogen uptake and release and pronounced destabilization of the metal-hydrogen bonding in comparison with binary Mg-H systems. In this review, various groups of magnesium compounds are considered, including (1) RE-Mg-Ni hydrides (RE = La, Pr, Nd); (2) Mg alloys with p-elements (X = Si, Ge, Sn, and Al); and (3) magnesium alloys with d-elements (Ti, Fe, Co, Ni, Cu, Zn, Pd). The hydrogenation-disproportionation-desorption-recombination process in the Mg-based alloys (LaMg<sub>12</sub>, LaMg<sub>11</sub>Ni) and unusually high-pressure hydrides synthesized ...
International audienceAmong lightweight materials, magnesium-containing systems are of interest for ...
In this contribution, nanocrystalline magnesium-rich Mg-Ni-Y alloys were produced by melt-spinning a...
Mg-based alloys are promising hydrogen storage materials because of the high gravimetric energy dens...
Magnesium-based alloys attract significant interest as cost-efficient hydrogen storage materials all...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
Since about 1970, metal hydrides have been prosperously invested for hydrogen storage materials as a...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
International audienceAbstract Hydrides based on magnesium and intermetallic compounds provide a via...
Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge o...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
International audienceHydrogen is a promising energy carrier, compatible with the sustainable energy...
The development of a magnesium based hydride material is explored for use as a lightweight hydrogen ...
International audienceMagnesium hydride owns the largest share of publications on solid materials fo...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
International audienceAmong lightweight materials, magnesium-containing systems are of interest for ...
In this contribution, nanocrystalline magnesium-rich Mg-Ni-Y alloys were produced by melt-spinning a...
Mg-based alloys are promising hydrogen storage materials because of the high gravimetric energy dens...
Magnesium-based alloys attract significant interest as cost-efficient hydrogen storage materials all...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
Since about 1970, metal hydrides have been prosperously invested for hydrogen storage materials as a...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
International audienceAbstract Hydrides based on magnesium and intermetallic compounds provide a via...
Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge o...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
International audienceHydrogen is a promising energy carrier, compatible with the sustainable energy...
The development of a magnesium based hydride material is explored for use as a lightweight hydrogen ...
International audienceMagnesium hydride owns the largest share of publications on solid materials fo...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
International audienceAmong lightweight materials, magnesium-containing systems are of interest for ...
In this contribution, nanocrystalline magnesium-rich Mg-Ni-Y alloys were produced by melt-spinning a...
Mg-based alloys are promising hydrogen storage materials because of the high gravimetric energy dens...