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Effect of annealing temperature on microstructures and electrochemical performances of La0.75Mg0.25Ni3.05Co0.2Al0.1Mo0.15 hydrogen storage alloy

机译:退火温度对La0.75Mg0.25Ni3.05Co0.2Al0.1Mo0.15贮氢合金组织和电化学性能的影响

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摘要

The effect of annealing temperature on microstructures and electrochemical performances of La0.75Mg0.25Ni3.05Co0.2Al0.1Mo0.15 hydrogen storage alloy is investigated. The alloys was prepared via vacuum induction melting followed by annealing treatment for 8 h at the temperatures of 1073, 1123, 1173, and 1223 K, respectively. The major phases in the as-cast and annealed alloys are consisted of (La, Mg)(2)Ni-7, (La, Mg)(5)Ni-19 and LaNi5 phase while the residual phase MoNi4 existing in the as-cast alloy decomposes into Mo phase after heat treatment. Annealing treatment facilitates LaNi5 phase transforms into (La, Mg)(2)Ni-7 and (La, Mg)(5)Ni-19 and LaNi5 phase, but the tendency is suppressed as annealing temperature increases. Furthermore, the annealed alloys have more homogeneous phase distribution and better crystallization. Electrochemical experiments manifest that annealing treatment is beneficial for the increase of the maximum discharge capacity while impairs the activation ability of the alloy electrodes. The cycle life is prolonged in consequence of the homogeneous phase distribution created by annealing treatment at 1073-1173 K. Nonetheless, annealing treatment distinctly deteriorates the kinetic property of the alloys electrodes which is mainly ascribed to the disappearance of MoNi4 phase with high-efficiency electrocatalydc activity. The comprehensive electrochemical properties of the annealed alloy at 1173 K presents a good balance between superior discharge capacity, kinetic property and remarkably improved cyclic stability. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了退火温度对La0.75Mg0.25Ni3.05Co0.2Al0.1Mo0.15贮氢合金组织和电化学性能的影响。通过真空感应熔化,然后分别在1073、1123、1173和1223 K的温度下退火8小时来制备合金。铸态和退火合金中的主要相由(La,Mg)(2)Ni-7,(La,Mg)(5)Ni-19和LaNi5相组成,而残余相MoNi4以下列形式存在:铸造合金在热处理后分解成Mo相。退火处理有利于LaNi5相转变为(La,Mg)(2)Ni-7和(La,Mg)(5)Ni-19和LaNi5相,但是随着退火温度的升高,这种趋势得到抑制。此外,退火的合金具有更均匀的相分布和更好的结晶。电化学实验表明,退火处理有利于最大放电容量的增加,同时损害合金电极的活化能力。通过在1073-1173 K下进行退火处理而产生的均匀相分布,延长了循环寿命。尽管如此,退火处理明显降低了合金电极的动力学性能,这主要归因于高效电催化作用下MoNi4相的消失。活动。退火合金在1173 K时的综合电化学性能在优异的放电容量,动力学性能和显着改善的循环稳定性之间取得了良好的平衡。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2016年第27期|11767-11775|共9页
  • 作者单位

    Adv Technol & Mat Co Ltd, Beijing Key Lab Energy Nanomat, China Iron & Steel Res Inst Grp, 76 Xueyuannanlu, Beijing 100081, Peoples R China;

    Adv Technol & Mat Co Ltd, Beijing Key Lab Energy Nanomat, China Iron & Steel Res Inst Grp, 76 Xueyuannanlu, Beijing 100081, Peoples R China;

    Adv Technol & Mat Co Ltd, Beijing Key Lab Energy Nanomat, China Iron & Steel Res Inst Grp, 76 Xueyuannanlu, Beijing 100081, Peoples R China;

    Adv Technol & Mat Co Ltd, Beijing Key Lab Energy Nanomat, China Iron & Steel Res Inst Grp, 76 Xueyuannanlu, Beijing 100081, Peoples R China;

  • 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
  • 中图分类
  • 关键词

    La-Mg-Ni alloy; Annealing treatment; Phase structure; Electrochemical performance;

    机译:La-Mg-Ni合金退火处理相结构电化学性能;

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