International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenation behavior, powders of TiH2, Mg and Ni with the molar ratio of 3:1:2 have been mechanically milled for 10 h, 20 h, 30 h, 40 h according to the stoichiometry (TiH2)1.5Mg0.5Ni. Microstructures of the milled sample were analyzed and their hydrogenation properties as negative electrodes for Ni-MH batteries were studied. Phase change with milling time revealed the fast formation of the Ti-Mg-H FCC phase. The alloying priority among Ti, Mg and Ni was demonstrated by comparing phase compositions in different milling time. Hydrogen capacities evaluated by both solidegas reaction and electrochemical cycling under galvanostatic conditions show that o...
It has been well established that hydrogen will react directly and reversibly with a large number of...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceMicrostructures, electrochemical properties of Ti–Ni and ternary Ti–Ni–Mg allo...
International audienceMicrostructures, electrochemical properties of Ti–Ni and ternary Ti–Ni–Mg allo...
In this study, a series of Ti-Mg-Ni alloys have been synthesized by mechanical alloying using a plan...
It has been well established that hydrogen will react directly and reversibly with a large number of...
It has been well established that hydrogen will react directly and reversibly with a large number of...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceWith the aim of further understanding for TieNieMg alloys and their hydrogenat...
International audienceMicrostructures, electrochemical properties of Ti–Ni and ternary Ti–Ni–Mg allo...
International audienceMicrostructures, electrochemical properties of Ti–Ni and ternary Ti–Ni–Mg allo...
In this study, a series of Ti-Mg-Ni alloys have been synthesized by mechanical alloying using a plan...
It has been well established that hydrogen will react directly and reversibly with a large number of...
It has been well established that hydrogen will react directly and reversibly with a large number of...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...