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Effect of Ti3B4 Surface Modification on Electrochemical Cycle Stability of Mg45Ti3V2Ni50 Alloy Electrode
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    Abstract:

    A series of Ti-B complexes with different composition and Mg45Ti3V2Ni50 hydrogen-storage alloys were synthesized by ball-milling. The effect of modification of Ti-B complexes on the cycle stability of Mg45Ti3V2Ni50 alloys was discussed and the Ti3B4 with a better comprehensive modification effect for Mg45Ti3V2Ni50 alloy electrode was selected. Mg45Ti3V2Ni50 -alloy electrode was modified with different mass ratios of Ti3B4 by ball-milling. The results show that the improvement degree of cycle stability and persistence is different due to different ratios of modification. There is a best composition of Ti-B and ratio of modification in the surface-modification process of Ti-B for the Mg-based hydrogen storage alloys in order to improve the cycle stability

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[Yang Guiling, An Guomin, Liu Jiangman, Yang Xiaomin, Li Xingguo, Jiao Xiaoyan. Effect of Ti3B4 Surface Modification on Electrochemical Cycle Stability of Mg45Ti3V2Ni50 Alloy Electrode[J]. Rare Metal Materials and Engineering,2010,39(5):838~842.]
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  • Received:May 03,2009
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