共 21 条
Effect of WFe substitution on microstructures and electrochemical hydrogen storage properties of LaNi3.70Co0.2-xMn0.30Al0.15Cu0.65(W0.42Fe0.58)x alloys
被引:1
|作者:
Ma Mingjie
[1
]
Sun Junling
[1
]
Fan Yanping
[1
]
Zhang Baoqing
[1
]
Ji Liqiang
[2
]
Liu Baozhong
[1
]
机构:
[1] Henan Polytech Univ, Sch Mat Sci & Engn, Jiaozuo 454000, Peoples R China
[2] Inner Mongolia Rare Earth Ovon Met Hydride Co Ltd, Baotou 014030, Peoples R China
基金:
中国国家自然科学基金;
关键词:
hydrogen storage alloy;
W0.42Fe0.58;
alloy;
microstructure;
electrochemical property;
Ni/MH batteries;
rare earths;
METAL HYDRIDE;
NI;
CO;
ELECTRODE;
COBALT;
STABILITY;
SAMARIUM;
KINETICS;
ZR;
AL;
D O I:
10.1016/S1002-0721(14)60495-6
中图分类号:
O69 [应用化学];
学科分类号:
081704 ;
摘要:
W0.42Fe0.58 alloy, instead of pure W and Fe, was used to substitute Co in LaNi3.70Co0.2Mn0.30Al0.15Cu0.65 alloy to improve the overall electrochemical properties with the decrement of the cost. Microstructures and electrochemical characteristics of LaNi3.70Co0.2-xMn0.30Al0.15Cu0.65(W0.42Fe0.58)(x) (x = 0-0.20) hydrogen storage alloys were characterized. X-ray diffraction patterns and backscattered electron images indicated that the pristine alloy was LaNi5 phase, while the alloys containing W0.42Fe0.58 were made of LaNi5 matrix phase and W phase. The relatived abundance of W phase increased with the increase in x value. Lattice parameters a, c, c/ a and cell volume V of LaNi5 phase increased with increasing x value. Activation property of the alloy electrodes was improved by substituting Co by W0.42Fe0.58. As x increased from 0 to 0.20, maximum discharge capacity of alloy electrodes decreased from 335.4 (x = 0) to 320.7 mAh/ g (x= 0.20). The high-rate dischargeability at the discharge current density of 1200 mA increased from 59.8% (x = 0) to 76.8% (x = 0.10), and then decreased to 64.7% (x = 0.20). The cycling capacity retention rate at the 100th cycle decreased from 80.4% (x = 0) to 55.8% (x = 0.20), which should be ascribed to the degradation of the corrosion resistance and electrochemical kinetics of alloy electrodes.
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页码:850 / 856
页数:7
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