The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)hydrogenation are investigated. These metastable alloys were successfully prepared by means of electron-beam deposition at room temperature. X-ray diffraction confirmed that crystalline single-phase materials were obtained. Galvanostatic dehydrogenation measurements show that substituting Mg by Ti clearly affects the hydrogen storage properties. MgyTi(1-y) alloys with less than 20 at.% Ti exhibit an extremely low rate-capability, whereas increasing the Ti-content leads to a enhanced rate-capability. A superior reversible hydrogen storage capacity, along with an excellent rate-capability, is found for the Mg0.80Ti0.20 alloy. To obtain a compre...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
MgyTi(1-y) alloys with 0.50¿¿¿¿.00 were prepared by electron beam deposition and magnetron co-sputte...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
Mg-based hydrogen storage alloys are promising candidates for many hydrogen storage applications bec...
The hydrogen storage characteristics of thin film MgX (X=Sc, Ti, V, Cr) compounds were investigated ...
The hydrogen storage characteristics of thin film MgX (X=Sc, Ti, V, Cr) compounds were investigated ...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
MgyTi(1-y) alloys with 0.50¿¿¿¿.00 were prepared by electron beam deposition and magnetron co-sputte...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
The electrochemical properties of MgyTi(1-y) thin films with y ranging from 0.50 to 0.95 during (de)...
Mg-based hydrogen storage alloys are promising candidates for many hydrogen storage applications bec...
The hydrogen storage characteristics of thin film MgX (X=Sc, Ti, V, Cr) compounds were investigated ...
The hydrogen storage characteristics of thin film MgX (X=Sc, Ti, V, Cr) compounds were investigated ...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
In the search for hydrogen storage materials with a high gravimetric capacity, MgyTi(1-y) alloys, wh...
MgyTi(1-y) alloys with 0.50¿¿¿¿.00 were prepared by electron beam deposition and magnetron co-sputte...