The influence of the mechanical grinding (MG) (under reactive atmosphere of hydrogen) conditions on the physico-chemical properties (crystallography, phase composition, morphology and hydrogen sorption properties) of a Mg+5% Wt.% Cr2O3 mixture are examined. Both a planetary and a vibratory ball miller have been used..
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
The influence of different milling conditions obtained using two high-energy mills on hydrogen desor...
A study of the effect of the ball-milling gas environment on the kinetic enhancement of MgH2 with di...
The influence of the mechanical grinding (MG) (under reactive atmosphere of hydrogen) conditions on ...
The influence of mechanical grinding under hydrogen (Reactive Mechanical Grinding=RMG) on the chemic...
Hydrogen sorption properties of Mg + 5 wt.%Cr2O3 mixtures are examined. Increasing the milling injec...
The hydrogen sorption properties of Mg+10% WO3 and Mg+5% Cr2O3 mixtures made by reactive (under hydr...
Reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorption proper...
We tried to improve the hydrogen sorption properties of Mg by mechanical grinding under H2 (reactive...
The use of reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorp...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive mecha...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The hydrogen sorption properties of a mixture of Mg+10 wt.% WO3 made by reactive mechanical grinding...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive grind...
Mg2CoH5 was synthesized by reactive mechanical milling (RMM) under hydrogen atmosphere (0.5 MPa) fro...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
The influence of different milling conditions obtained using two high-energy mills on hydrogen desor...
A study of the effect of the ball-milling gas environment on the kinetic enhancement of MgH2 with di...
The influence of the mechanical grinding (MG) (under reactive atmosphere of hydrogen) conditions on ...
The influence of mechanical grinding under hydrogen (Reactive Mechanical Grinding=RMG) on the chemic...
Hydrogen sorption properties of Mg + 5 wt.%Cr2O3 mixtures are examined. Increasing the milling injec...
The hydrogen sorption properties of Mg+10% WO3 and Mg+5% Cr2O3 mixtures made by reactive (under hydr...
Reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorption proper...
We tried to improve the hydrogen sorption properties of Mg by mechanical grinding under H2 (reactive...
The use of reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorp...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive mecha...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The hydrogen sorption properties of a mixture of Mg+10 wt.% WO3 made by reactive mechanical grinding...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive grind...
Mg2CoH5 was synthesized by reactive mechanical milling (RMM) under hydrogen atmosphere (0.5 MPa) fro...
Magnesium hydrides are considered as the potential hydrogen storage materials. However, high work te...
The influence of different milling conditions obtained using two high-energy mills on hydrogen desor...
A study of the effect of the ball-milling gas environment on the kinetic enhancement of MgH2 with di...