Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen storage (7.6wt.%), lightweight and a reasonably low cost. However, high working temperature (<300°C), slow reaction kinetics (need more than 1 hour to produce 5 wt% of hydrogen) and difficult activation limit the practical application of Mg-based hydrides. In order to improve their performance, MgH2 was catalyzed with Ni nanoparticles which reactively milled under hydrogen atmosphere. Phase identification and microstructure were characterised by XRD and scanning electron microscope (SEM). Hydrogen sorption properties was studied by gravimetric analysis method. The results show that, small amount of Ni in nanometer scale proved to be as a suitable ...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
SSCI-VIDE+ATARI+BGL:AAU:GPONational audienceOne of the major challenges for the success of hydrogen ...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
Regarding the use of hydrogen in fuel cell for mobile or stationary applications, metal hydrides can...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
Mg and Ni nanoparticles were prepared by hydrogen plasma-metal reaction (HPMR). MgH2 nanoparticles w...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
The aim of this work is to investigate the hydrogen sorption kinetics and thermodynamics of Mg-Ni na...
The aim of this work is to investigate the hydrogen sorption kinetics and thermodynamics of Mg-Ni na...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
SSCI-VIDE+ATARI+BGL:AAU:GPONational audienceOne of the major challenges for the success of hydrogen ...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
Regarding the use of hydrogen in fuel cell for mobile or stationary applications, metal hydrides can...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
The aim of this work is to investigate metal hydride transformation in Magnesium (Mg) nanoparticles ...
Mg and Ni nanoparticles were prepared by hydrogen plasma-metal reaction (HPMR). MgH2 nanoparticles w...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
The aim of this work is to investigate the hydrogen sorption kinetics and thermodynamics of Mg-Ni na...
The aim of this work is to investigate the hydrogen sorption kinetics and thermodynamics of Mg-Ni na...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
SSCI-VIDE+ATARI+BGL:AAU:GPONational audienceOne of the major challenges for the success of hydrogen ...