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在Ar气的保护下,利用磁悬浮感应炉熔炼制备La0.7Mg0.3-xLixNi2.8Co0.5 (x=0.00,0.05,0.10,0.15)合金,并研究Li部分取代Mg对La0.7Mg0.3-xLixNi2.8Co0.5 (x=0.00,0.05,0.10,0.15)合金电化学性能的影响.研究结果发现,合金电极的最大放电容量依次为385 mAh/g(x=0.00)、390 mAh/g(x=0.05)、385 mAh/g(x=0.10)和393 mAh/g(x=0.15),经过100次充放电循环后,合金电极的容量保持率S100从39.7%(x=0.00)增加到42.1%(x=0.05),然后再下降到39.8%(x=0.10)和34.2%(x=0.15),而合金电极在放电电流密度为1200 mA/g的高倍率放电性能HRD1200则从x=0.00的80%逐渐增大到x=0.15的82.8%.这充分说明以Li局部替代Mg,对La-Mg-Ni合金电极的最大放电影响较小,但能提高合金电极的动力学性能,且适量的Li有利于改善合金电极的循环稳定性.

参考文献

[1] Tian, Xiao;Yun, Guohong;Wang, Hongyu;Shang, Tao;Yao, Zhanquan;Wei, Wei;Liang, Xixia.Preparation and electrochemical properties of La-Mg-Ni-based La0.75Mg0.25Ni3.3Co0.5 multiphase hydrogen storage alloy as negative material of Ni/MH battery[J].International journal of hydrogen energy,201416(16):8474-8481.
[2] Zhenwei Dong;Liqun Ma;Yaoming Wu;Limin Wang;Xiaodong Shen.Microstructure and electrochemical hydrogen storage characteristics of (La_(0.7)Mg_(0.3))_(1-x)Ce_xNi_(2.8)Co_(0.5) (x = 0-0.20) electrode alloys[J].International journal of hydrogen energy,20114(4):3016-3021.
[3] 李瑞;胡泽忠;刘永锋;高明霞;潘洪革.La0.7Mg0.3Ni2.65Co0.75-xMn0.1Six储氢电极合金的结构和电化学性能[J].材料科学与工程学报,2013(3):372-375,460.
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