Structural, gaseous phase hydrogen storage, and electrochemical properties of a series of the Ti50Zr1Ni44X5 (X = Ni, Cr, Mn, Fe, Co, or Cu) metal hydride alloys were studied. X-ray diffraction (XRD) and scanning electron microscopy (SEM) revealed the multi-phase nature of all alloys, which were composed of a stoichiometric TiNi matrix, a hyperstoichiometric TiNi minor phase, and a Ti2Ni secondary phase. Improvement in synergetic effects between the main TiNi and secondary Ti2Ni phases, determined by the amount of distorted lattice region in TiNi near Ti2Ni, was accomplished by the substitution of an element with a higher work function, which consequently causes a dramatic increase in gaseous phase hydrogen storage capacity compared to the T...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
In this review article, the fundamentals of electrochemical reactions involving metal hydrides are e...
The structure and electrochemical characteristics of melted composite Ti0.10Zr0.15V0.35Cr0.10Ni0.30 ...
Structure, gaseous phase hydrogen storage, and electrochemical properties of a series of TiVCrMn-bas...
This study was motivated by a desire to understand more about the performance of Ti2Ni hydrogen stor...
The present work was focused on the studies of the effect of variation of stoichiometric composition...
Crystal structure, pressure-composition isotherms and electrochemical properties of the Zr0.6−...
Ti-Zr-V-Mn-Ni-based multi-component alloys demonstrate high discharge capacity in KOH electrolyte. H...
MgNiTix, Mg1-xTixNi and MgNi1-xTix (with x varying from 0 to 0.5) alloys have been prepared by high ...
International audienceNominal Ti2Ni was synthesized under argon atmosphere at room temperature using...
We prepared Ti1.4V0.6Ni ribbons by arc-melting and subsequent melt-spinning techniques. Ti1.4V0.6Ni ...
[[abstract]]©1996 Electrochem - Electrochemical properties of Ti0.35Zr0.65NixV2–x–yMny alloys used a...
Ni-MH (Nickel-Metal-Hydride) batteries have been a promising and extensively studied topic among cle...
Herein, we present a comparison of the electrochemical hydrogen-storage characteristics of two state...
The abili[y of certain intennctallic alloys to reversibly absorb significant amounts of hydrogen at ...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
In this review article, the fundamentals of electrochemical reactions involving metal hydrides are e...
The structure and electrochemical characteristics of melted composite Ti0.10Zr0.15V0.35Cr0.10Ni0.30 ...
Structure, gaseous phase hydrogen storage, and electrochemical properties of a series of TiVCrMn-bas...
This study was motivated by a desire to understand more about the performance of Ti2Ni hydrogen stor...
The present work was focused on the studies of the effect of variation of stoichiometric composition...
Crystal structure, pressure-composition isotherms and electrochemical properties of the Zr0.6−...
Ti-Zr-V-Mn-Ni-based multi-component alloys demonstrate high discharge capacity in KOH electrolyte. H...
MgNiTix, Mg1-xTixNi and MgNi1-xTix (with x varying from 0 to 0.5) alloys have been prepared by high ...
International audienceNominal Ti2Ni was synthesized under argon atmosphere at room temperature using...
We prepared Ti1.4V0.6Ni ribbons by arc-melting and subsequent melt-spinning techniques. Ti1.4V0.6Ni ...
[[abstract]]©1996 Electrochem - Electrochemical properties of Ti0.35Zr0.65NixV2–x–yMny alloys used a...
Ni-MH (Nickel-Metal-Hydride) batteries have been a promising and extensively studied topic among cle...
Herein, we present a comparison of the electrochemical hydrogen-storage characteristics of two state...
The abili[y of certain intennctallic alloys to reversibly absorb significant amounts of hydrogen at ...
International audienceThe structure and the electrochemical hydrogen storage properties of amorphous...
In this review article, the fundamentals of electrochemical reactions involving metal hydrides are e...
The structure and electrochemical characteristics of melted composite Ti0.10Zr0.15V0.35Cr0.10Ni0.30 ...