Mg45M5Co50(M=Pd, Zr)三元贮氢电极的电化学性能

来源期刊:中国有色金属学报(英文版)2016年第5期

论文作者:詹乐宇 张耀 朱云峰 庄向阳 万能 曲翊 郭新立 陈坚 王增梅 李李泉

文章页码:1388 - 1395

关键词:Mg基电极合金;贮氢;机械合金化;体心立方结构;电化学性能;元素替代

Key words:Mg-based electrode alloy; hydrogen storage; mechanical alloying; body-centered cubic structure; electrochemical performance; elemental substitution

摘    要:为了提高Mg-Co系合金的放电容量及循环稳定性,通过机械合金化的方法,制备三元Mg45M5Co50 (M=Pd, Zr)合金。透射电子显微镜(TEM)分析表明,合金为体心立方相(BCC)的纳米晶结构。电化学测试表明,在Mg45M5Co50 (M=Mg, Pd, Zr)合金中,Mg45Zr5Co50电极的容量最高,达到425 mA·h/g;相比Mg50Co50,Mg45Pd5Co50电极的首次放电容量(379 mA·h/g)与电化学动力学性能均得到提高。结果表明,通过用Zr和Pd元素替代Mg元素,Mg-Co基合金的电化学性能得到改善。

Abstract: In order to improve the discharge capacity and cyclic life of Mg-Co-based alloy, ternary Mg45M5Co50 (M=Pd, Zr) alloys were synthesized via mechanical alloying. TEM analysis demonstrates that these alloys all possess body-centered cubic (BCC) phase in nano-crystalline. Electrochemical experiments show that Mg45Zr5Co50 electrode exhibits the highest capacity (425 mA·h/g) among the Mg45M5Co50 (M=Mg, Pd, Zr) alloys. And Mg45Pd5Co50 electrode lifts not only the initial discharge capacity (379 mA·h/g), but also the discharge kinetics, e.g., exchange current density and hydrogen diffusion ability from that of Mg50Co50. It could be concluded that the electrochemical performances were enhanced by substituting Zr and Pd for Mg in Mg-Co-based alloy.

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