Mg and Ni nanoparticles were prepared by hydrogen plasma-metal reaction (HPMR). MgH2 nanoparticles were obtained by hydriding the Mg nanoparticles. Hydrogen storage kinetics of the MgH2 nanoparticles doped with different amount of Ni nanoparticles was investigated by differential scanning calorimetry (DSC) and hydrogen desorption rate measurements. The obtained samples show superior hydrogen storage kinetics. 6.1 wt% hydrogen is desorbed in 10 min at 523 K under an initial pressure of 0.01 bar of H-2 when the proportion of Ni narroparticles is 10 wt%. The desorption rate increases when enhancing the amount of catalyst. However, the activation energy of desorption does not decrease any more when the amount of Ni exceeds a value. The enhanced...
Mg3N2 nanocubes with particle size about 50 nm were synthesized by vaporized bulk magnesium with amm...
Fine Ni particles are effective in catalyzing hydrogen sorption of MgH2, but there is confusion abou...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
The catalysis of NiFe2O4 nanoparticles on the hydrogen storage performances of magnesium hydride syn...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
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...
Regarding the use of hydrogen in fuel cell for mobile or stationary applications, metal hydrides can...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Metal nanocatalysis is an effective method to enhance the hydrogen storage properties of magnesium h...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Mg3N2 nanocubes with particle size about 50 nm were synthesized by vaporized bulk magnesium with amm...
Fine Ni particles are effective in catalyzing hydrogen sorption of MgH2, but there is confusion abou...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
The catalysis of NiFe2O4 nanoparticles on the hydrogen storage performances of magnesium hydride syn...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
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...
Regarding the use of hydrogen in fuel cell for mobile or stationary applications, metal hydrides can...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Metal nanocatalysis is an effective method to enhance the hydrogen storage properties of magnesium h...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
Mg3N2 nanocubes with particle size about 50 nm were synthesized by vaporized bulk magnesium with amm...
Fine Ni particles are effective in catalyzing hydrogen sorption of MgH2, but there is confusion abou...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...