This work focuses on improving the thermal stability of Mg nanoparticles (NPs) for use in hydrogen storage. Three ways are investigated that can achieve this goal. (i) Addition of Cu prevents void formation during NP production and reduces the fast evaporation/voiding of Mg during annealing. (ii) Alloying can prevent Mg evaporation: e. g., Mg with Ni forms a thermally stable core/shell (MgNi(2)/Ni) preventing Mg evaporation during annealing. (iii) Covering Mg NPs with a Ti film leads to suppression of Mg evaporation during vacuum annealing. Indeed, hydrogenation of the Ti/Mg NPs shows formation of the gamma-MgH(2) phase as for pure Mg NPs
Reliable and affordable energy storage represents a bottleneck in a scenario where renewable energy ...
This is an accepted manuscript of an article published byElsevier in Reference Module in Materials S...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
This work focuses on improving the thermal stability of Mg nanoparticles (NPs) for use in hydrogen s...
The main motivation of this thesis was to analyze the structural details and the changes that can oc...
In this work we present a unique transmission electron microscopy study of the thermal stability of ...
Here we report the extraordinary thermal stability of Mg rich bimetallic nanoparticles (NPs), which ...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
The effect of titanium on magnesium nanoparticle formation is investigated in relation to the import...
Mg-based materials are very promising for hydrogen storage applications. However, both the kinetic a...
We report on the hydrogen storage behaviour of Mg nanoparticles (NPs) (size range 100 nm\u20131 um) ...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
Reliable and affordable energy storage represents a bottleneck in a scenario where renewable energy ...
This is an accepted manuscript of an article published byElsevier in Reference Module in Materials S...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
This work focuses on improving the thermal stability of Mg nanoparticles (NPs) for use in hydrogen s...
The main motivation of this thesis was to analyze the structural details and the changes that can oc...
In this work we present a unique transmission electron microscopy study of the thermal stability of ...
Here we report the extraordinary thermal stability of Mg rich bimetallic nanoparticles (NPs), which ...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
The effect of titanium on magnesium nanoparticle formation is investigated in relation to the import...
Mg-based materials are very promising for hydrogen storage applications. However, both the kinetic a...
We report on the hydrogen storage behaviour of Mg nanoparticles (NPs) (size range 100 nm\u20131 um) ...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
Reliable and affordable energy storage represents a bottleneck in a scenario where renewable energy ...
This is an accepted manuscript of an article published byElsevier in Reference Module in Materials S...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...