39 pages, 9 figure, 4 tables, 3 supplementary figuresInternational audienceTiFe intermetallic compound has been extensively studied, owing to its low cost, good volumetric hydrogen density, and easy tailoring of hydrogenation thermodynamics by elemental substitution. All these positive aspects make this material promising for large-scale applications of solid-state hydrogen storage. On the other hand, activation and kinetic issues should be amended and the role of elemental substitution should be further understood. This work investigates the thermodynamic changes induced by the variation of Ti content along the homogeneity range of the TiFe phase (Ti:Fe ratio from 1:1 to 1:0.9) and of the substitution of Mn for Fe between 0 and 5 at.%. In ...
The alloy TiFe has interesting hydrogen storage properties for practical applications: low cost, ope...
In this paper, the effects of doping, cold rolling and forging on the microstructure and hydrogen st...
The hydrogen storage properties of a multi-component alloy of composition Ti0.3V0.3Mn0.2Fe0.1Ni0.1 w...
39 pages, 9 figure, 4 tables, 3 supplementary figuresInternational audienceTiFe intermetallic compou...
TiFe intermetallic compound has been extensively studied, owing to its low cost, good volumetric hyd...
22 pages, 4 Tables, 4 Figures, 4 ESI FiguresInternational audienceThe present study investigates the...
International audienceThe search for suitable materials for solid-state stationary storage of green ...
In this paper, we report the effect of adding Zr + V or Zr + V + Mn to TiFe alloy on microstructure ...
Hydrogen has been considered as a potential candidate for the replacement of fossil fuels in future ...
In this work, TiFe-based alloys have been developed according to the stoichiometry Ti(1-x)A(x)Fe(1-y...
Titanium iron (TiFe) alloy is a room-temperature hydrogen-storage material, and it absorbs hydrogen ...
Ti-V-based metal hydrides have decent overall performance as hydrogen storage materials, but V is ex...
The aim of this investigation was to improve the first hydrogenation of TiFe by adding yttrium. The ...
The goal of this study was to optimize the activation behaviour of hydrogen storage alloy TiFe. We f...
International audienceHydrogen solid storage in intermetallic compounds has attracted great attentio...
The alloy TiFe has interesting hydrogen storage properties for practical applications: low cost, ope...
In this paper, the effects of doping, cold rolling and forging on the microstructure and hydrogen st...
The hydrogen storage properties of a multi-component alloy of composition Ti0.3V0.3Mn0.2Fe0.1Ni0.1 w...
39 pages, 9 figure, 4 tables, 3 supplementary figuresInternational audienceTiFe intermetallic compou...
TiFe intermetallic compound has been extensively studied, owing to its low cost, good volumetric hyd...
22 pages, 4 Tables, 4 Figures, 4 ESI FiguresInternational audienceThe present study investigates the...
International audienceThe search for suitable materials for solid-state stationary storage of green ...
In this paper, we report the effect of adding Zr + V or Zr + V + Mn to TiFe alloy on microstructure ...
Hydrogen has been considered as a potential candidate for the replacement of fossil fuels in future ...
In this work, TiFe-based alloys have been developed according to the stoichiometry Ti(1-x)A(x)Fe(1-y...
Titanium iron (TiFe) alloy is a room-temperature hydrogen-storage material, and it absorbs hydrogen ...
Ti-V-based metal hydrides have decent overall performance as hydrogen storage materials, but V is ex...
The aim of this investigation was to improve the first hydrogenation of TiFe by adding yttrium. The ...
The goal of this study was to optimize the activation behaviour of hydrogen storage alloy TiFe. We f...
International audienceHydrogen solid storage in intermetallic compounds has attracted great attentio...
The alloy TiFe has interesting hydrogen storage properties for practical applications: low cost, ope...
In this paper, the effects of doping, cold rolling and forging on the microstructure and hydrogen st...
The hydrogen storage properties of a multi-component alloy of composition Ti0.3V0.3Mn0.2Fe0.1Ni0.1 w...