The structure and electrochemical characteristics of melted composite Ti0.10Zr0.15V0.35Cr0.10Ni0.30+x% LaNi5 (x=0, 1, 5 and 10) hydrogen storage alloys have been investigated systematically. XRD shows that the matrix phase structure of V-based solid solution phase with a BCC structure and C14 Laves phase with hexagonal structure is not changed after adding LaNi5 alloy. However, the amount of the secondary phase increases with increasing LaNi5 content. Field emission scanning electron microscopy-energy dispersive spectroscopy (FESEM-EDS) shows that the C14 Laves phase contains more Zr and the white lard phase has a composition close to (Zr, Ti)(V, Cr, Ni, La)(2)
The Ti(1.4)V(0.6)Ni ribbon alloy and AB(3)-type (La(0.65)Nd(0.12)Mg(0.23)Ni(2.9)Al(0.1)) alloy ingot...
This study examined the structure and electrochemical hydrogen storage characteristics of the Ti1.4V...
The Ti1.4V0.6Ni alloy ribbon is prepared by arc melting and subsequent melt-spinning technique. The ...
The structure and electrochemical characteristics of melted composite Ti0.10Zr0.15V0.35Cr0.10Ni0.30 ...
AB(2-x)%LaNi5 (x =0, 1, 5, 10) composite alloys were prepared by melting Zr0.9Ti0.1Ni1.1Mn0.6V0.3 wi...
Effect of La-Mg-based alloy (AB(5)) addition on Structure and electrochemical characteristics of Ti0...
In the present work, new type hydrogen storage composites electrodes Ti0.9Zr0.2Mn1.5Cr0.3V0.3-x wt% ...
The La0.7Mg0.3Ni2.75Co0.75 and Ti0.17Zr0.08V0.35Cr0.1Ni0.3 alloys were prepared by vacuum magnetic l...
The Ti1.4V0.6Ni ribbon alloy and VTZN (V5Ti9Zr26.7Ni38Cr5Mn16Sn0.3) alloy ingot are prepared by melt...
Microstructures and electrochemical properties of Ti0.26Zr0.07V0.21Mn0.1Ni0.33Mox (x=0,0.025,0.05,0....
The Ti(0.9)Zr(0.1)V(0.2)Ni(1.5)La(0.5) alloy samples were synthesized by melt-spinning technique at ...
In order to elucidate the effects of metallic La addition on the performance of Ti-V-based hydrogen ...
Hydrogen storage alloy composites Ti0.9Zr0.2Mn1.5Cr0.3V0.3 - x wt% La0.7Mg0.25Zr0.05(Ni-0.85 Co-0.15...
In the present study, hydrogen storage composite electrodes were prepared by mechanical milling the ...
In order to overcome the inherent disadvantages of Ti-V-based hydrogen storage alloys, such as poor ...
The Ti(1.4)V(0.6)Ni ribbon alloy and AB(3)-type (La(0.65)Nd(0.12)Mg(0.23)Ni(2.9)Al(0.1)) alloy ingot...
This study examined the structure and electrochemical hydrogen storage characteristics of the Ti1.4V...
The Ti1.4V0.6Ni alloy ribbon is prepared by arc melting and subsequent melt-spinning technique. The ...
The structure and electrochemical characteristics of melted composite Ti0.10Zr0.15V0.35Cr0.10Ni0.30 ...
AB(2-x)%LaNi5 (x =0, 1, 5, 10) composite alloys were prepared by melting Zr0.9Ti0.1Ni1.1Mn0.6V0.3 wi...
Effect of La-Mg-based alloy (AB(5)) addition on Structure and electrochemical characteristics of Ti0...
In the present work, new type hydrogen storage composites electrodes Ti0.9Zr0.2Mn1.5Cr0.3V0.3-x wt% ...
The La0.7Mg0.3Ni2.75Co0.75 and Ti0.17Zr0.08V0.35Cr0.1Ni0.3 alloys were prepared by vacuum magnetic l...
The Ti1.4V0.6Ni ribbon alloy and VTZN (V5Ti9Zr26.7Ni38Cr5Mn16Sn0.3) alloy ingot are prepared by melt...
Microstructures and electrochemical properties of Ti0.26Zr0.07V0.21Mn0.1Ni0.33Mox (x=0,0.025,0.05,0....
The Ti(0.9)Zr(0.1)V(0.2)Ni(1.5)La(0.5) alloy samples were synthesized by melt-spinning technique at ...
In order to elucidate the effects of metallic La addition on the performance of Ti-V-based hydrogen ...
Hydrogen storage alloy composites Ti0.9Zr0.2Mn1.5Cr0.3V0.3 - x wt% La0.7Mg0.25Zr0.05(Ni-0.85 Co-0.15...
In the present study, hydrogen storage composite electrodes were prepared by mechanical milling the ...
In order to overcome the inherent disadvantages of Ti-V-based hydrogen storage alloys, such as poor ...
The Ti(1.4)V(0.6)Ni ribbon alloy and AB(3)-type (La(0.65)Nd(0.12)Mg(0.23)Ni(2.9)Al(0.1)) alloy ingot...
This study examined the structure and electrochemical hydrogen storage characteristics of the Ti1.4V...
The Ti1.4V0.6Ni alloy ribbon is prepared by arc melting and subsequent melt-spinning technique. The ...