Title of article :
Microstructure and electrochemical characteristics of La0.7Ce0.3Ni3.75Mn0.35Al0.15Cu0.75-x(V0.81Fe0.19)x hydrogen storage alloys
Author/Authors :
Baozhong Liu، نويسنده , , Mengjuan HU، نويسنده , , Anming LI، نويسنده , , Liqiang Ji، نويسنده , , Baoqing Zhang، نويسنده , , Xilin Zhu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Abstract :
Microstructure and electrochemical characteristics of La0.7Ce0.3Ni3.75Mn0.35Al0.15Cu0.75x(V0.81Fe0.19)x hydrogen storage alloys were investigated. XRD indicated that La0.7Ce0.3Ni3.75Mn0.35Al0.15Cu0.75x(V0.81Fe0.19)x alloys consisted of a single phase with CaCu5-type structure, and the lattice parameter a and cell volume V increased with increasing x value. The maximum discharge capacity first increased from 319.0 (x=0) to 324.0 mAh/g (x=0.05), and then decreased to 307.0 mAh/g (x=0.20). The high-rate dischargeability at the discharge current density of 1200 mA/g first increased from 52.1% (x=0) to 59.1% (x=0.15), and then decreased to 55.4% (x=0.20). The hydrogen diffusion in the bulky alloy was responsible for the high-rate dischargeability. Cycling stability first increased with increasing x from 0 to 0.10 and then decreased when x increased to 0.20, which was resulted from the synthesized effect of the improvement of the pulverization resistance and the decrease of corrosion resistance.
Keywords :
VFe alloy , Electrochemical Property , Ni/MH batteries , rare earths , Hydrogen storage alloy , Phase structure
Journal title :
Journal of Rare Earths
Journal title :
Journal of Rare Earths