We utilized transmission electron microscopy (TEM) analysis, with a cryogenically cooled sample stage, to detail the microstructure of partially transformed pure and titanium fluoride-catalyzed magnesium hydride powder during hydrogenation cycling. The TiF3-catalyzed MgH2 powder demonstrated excellent hydrogen storage kinetics at various temperatures, whereas the uncatalyzed MgH2 showed significant degradation in both kinetics and capacity. TEM analysis on the partially hydrogen absorbed and partially desorbed pure Mg(MgH2) revealed a large fraction of particles that were either not transformed at all or were completely transformed. On the other hand, in the MgH2+TiF3 system it was much easier to identify regions with both the hydride and t...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Mg80[sbnd]Ti20 hydride systems were prepared via reactive ball milling following two different proce...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...
To understand the catalytic influence of TiF3 on the de- and rehydrogenation of ball milled MgH2–TiF...
To understand the catalytic influence of TiF3 on the de- and rehydrogenation of ball milled MgH2–TiF...
Magnesium hydride combined with a new bimetallic Nb\u2013V catalyst displays remarkably rapid and st...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
Cryo-stage transmission electron microscopy (TEM), supported by Density Functional Theory (DFT), is ...
One of the main limitations for the implementation of hydrogen as energy carrier is the lack of an e...
A cost effective catalyst is of great importance for consideration of MgH2 as potential hydrogen sto...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
Catalyzing magnesium hydride by 5 mol % titanium fluoride is observed to have a pronounced impact on...
International audienceMagnesium is a remarkable hydrogen storage material due to its ability to reve...
International audienceReversible hydrogen storage in magnesium hydride is the most suitable solution...
In-situ observation of the catalytic action of MgH2-1 mol%Nb2O5 and MgH2-10 mol%Nb2O5 was carried ou...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Mg80[sbnd]Ti20 hydride systems were prepared via reactive ball milling following two different proce...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...
To understand the catalytic influence of TiF3 on the de- and rehydrogenation of ball milled MgH2–TiF...
To understand the catalytic influence of TiF3 on the de- and rehydrogenation of ball milled MgH2–TiF...
Magnesium hydride combined with a new bimetallic Nb\u2013V catalyst displays remarkably rapid and st...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
Cryo-stage transmission electron microscopy (TEM), supported by Density Functional Theory (DFT), is ...
One of the main limitations for the implementation of hydrogen as energy carrier is the lack of an e...
A cost effective catalyst is of great importance for consideration of MgH2 as potential hydrogen sto...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
Catalyzing magnesium hydride by 5 mol % titanium fluoride is observed to have a pronounced impact on...
International audienceMagnesium is a remarkable hydrogen storage material due to its ability to reve...
International audienceReversible hydrogen storage in magnesium hydride is the most suitable solution...
In-situ observation of the catalytic action of MgH2-1 mol%Nb2O5 and MgH2-10 mol%Nb2O5 was carried ou...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Mg80[sbnd]Ti20 hydride systems were prepared via reactive ball milling following two different proce...
Mg is an attractive hydrogen storage material not only because of its high gravimetric and volumetri...