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Mechanical alloying and electrochemical hydrogen storage of Mg-based systems

机译:镁基系统的机械合金化和电化学储氢

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摘要

Results on mechanical alloying of binary and ternary Mg-Ti-based mixtures are reported. Using fine-powdered reactants and a process-control-agent, a mixture of two face-centered cubic compounds is obtained. Using a coarse Mg precursor without addition of a milling agent results in a hexagonal-solid solution of Ti in Mg due to a lower oxygen content in the Mg starting material. Upon introduction of Ni or Al as a third element, the amount of dissolved Ti decreases to form a nanocrystalline secondary phase. The electrochemical charging capacity of the hexagonal compounds is far superior to that of the cubic ones, whereas the discharge capacity is significantly increased only upon addition of Ni. The secondary TiNi phase acts as a rapid diffusion path for hydrogen, greatly improving the rate capability of the alloys. The reversible hydrogen storage capacity reaches values of up to 3.2 wt% at room temperature for (Mg_(0.75)Ti_(0.25))_(0.90)Ni_(0.10).
机译:报道了二元和三元Mg-Ti基混合物的机械合金化结果。使用细粉状反应物和过程控制剂,可获得两种以面心为中心的立方化合物的混合物。由于在Mg起始材料中较低的氧含量,使用不添加研磨剂的粗Mg前体导致Ti在Mg中的六方固溶体。在引入Ni或Al作为第三元素时,溶解的Ti的量减少以形成纳米晶第二相。六方化合物的电化学充电能力远远优于立方化合物,而放电容量仅在添加镍后才显着增加。 TiNi二次相充当氢的快速扩散路径,大大提高了合金的倍率能力。对于(Mg_(0.75)Ti_(0.25))_(0.90)Ni_(0.10),在室温下可逆储氢容量达到高达3.2 wt%的值。

著录项

  • 来源
    《Journal of Materials Research》 |2008年第8期|2179-2187|共9页
  • 作者

    W.P. Kalisvaart; P.H.L. Notten;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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