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作 者:王大辉[1] 钟燕萍[1] 闫汝煦[1] 罗永春[1] 康龙[1]
机构地区:[1]兰州理工大学,甘肃兰州730050
出 处:《稀有金属材料与工程》2010年第1期27-31,共5页Rare Metal Materials and Engineering
基 金:National Natural Science Foundation of China (50171021);Natural Science Foundation of Gansu Province (YS031-A21-008)
摘 要:研究了Mn替代Ni对La2Mg0.9Al0.1Ni7.5-xCo1.5Mnx(x=0,0.3,0.6,0.9)贮氢合金相结构和电化学性能的影响。XRDRietveld全谱拟合分析表明:Mn替代改变了合金的物相组成和物相的丰度。LaNi3相消失,αLa2Ni7相丰度的变化表现为先增加(x=0,0.3)后减少(x=0.6,0.9),LaMgNi4相和La5Ni19相的丰度则随合金中Mn含量x的增加而增加。Mn替代Ni降低了合金的贮氢容量、最大电化学放电容量和活化性能,La2Mg0.9Al0.1Ni7.2Co1.5Mn0.3合金电极表现出最好的电化学循环稳定性,合金的高倍率放电性能随Mn含量的增加降低,这归因于交换电流密度(I0)和氢扩散系数(D)的降低。Effect of Mn substitution for Ni on phase constitution and electrochemical characteristics of La2Mg0.9Al0.1Ni7.5-xCO1.5Mnx(x=0, 0.3, 0.6, 0.9) hydrogen storage alloys was studied. It is found that Mn substitution will change phase composition and phase constitution of the alloys. LaNi3 phase disappears; the components of aLaeNi7 first increases with Mn content from x=0 to x=0.3 and then decreases from x=0.6 to 0.9. Both component of LaMgNi4 phase and LasNi19 phase increase as x increases in the alloys. Replacement of Ni by Mn will lower hydrogen storage capacity, maximum electrochemical discharge capacity and activation property of the alloy electrodes. La2Mg0.9Al0.1Ni7.2Col.5Mn0.3 hydride electrode shows the best cycle stability. The high rate dischargeability of the alloys decreases with the increase of Mn content, which would be attributed to the decrease of exchange current density (10) and diffusion coefficient of the hydrogen atom (D).
关 键 词:贮氢合金 Mn替代Ni:X射线衍射 电化学性能
分 类 号:TG139.7[一般工业技术—材料科学与工程] TK403[金属学及工艺—合金]
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