After Mg and Ni nanoparticles were fabricated by hydrogen plasma metal reaction, Mg-rich MgxNi100-x(75 < x < 90) materials were synthesized from these metal nanoparticles to study the synergistic effects for hydrogen storage in these samples to show both good kinetics and high capacity. These MgxNi100-x materials may absorb hydrogen with a capacity of around 3.3-5.1 wt% in 1 min at 573 K. The Mg90Ni10 sample shows a hydrogen capacity of 6.1 wt%. The significant kinetic enhancement is thought to be due to the unique nanostructure from the special synthesis route, the catalytic effect of the Mg2Ni nano phase, and the synergistic effects between the Mg2Ni and Mg phases in the materials. An interesting phenomenon which has never been repo...
There is a considerable interest in developing magnesium and magnesium alloys in the form of nanopar...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Mg and Ni nanoparticles were prepared by hydrogen plasma-metal reaction (HPMR). MgH2 nanoparticles w...
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...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...
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 ...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
The Mg2Ni intermetallic compound was successfully prepared under 3.00 MPa hydrogen pressure at 553 K...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
Mg2Ni-based alloys have been intensively investigated as gaseous hydrogen absorption materials and n...
In the present work, Mg-rich Mg-Ni ultrafine powders were prepared through an arc plasma method. The...
There is a considerable interest in developing magnesium and magnesium alloys in the form of nanopar...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Mg and Ni nanoparticles were prepared by hydrogen plasma-metal reaction (HPMR). MgH2 nanoparticles w...
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...
The Mg-10.6 wt. % La-3.5 wt. % Ni nanoparticles are prepared by hydrogen plasma-metal reaction metho...
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 ...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
In order to enhance the hydrogen storage properties of Mg, flowerlike NiS particles have been succes...
The Mg2Ni intermetallic compound was successfully prepared under 3.00 MPa hydrogen pressure at 553 K...
Among the metal hydrides, magnesium has the theoretically highest weight capacity for hydrogen stora...
Mg2Ni-based alloys have been intensively investigated as gaseous hydrogen absorption materials and n...
In the present work, Mg-rich Mg-Ni ultrafine powders were prepared through an arc plasma method. The...
There is a considerable interest in developing magnesium and magnesium alloys in the form of nanopar...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
Mg and Ni nanoparticles were prepared by hydrogen plasma-metal reaction (HPMR). MgH2 nanoparticles w...