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The influence of Cu substitution on the hydrogen sorption properties of magnesium rich Mg-Ni films

机译:铜取代对富镁Mg-Ni薄膜氢吸附性能的影响

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摘要

This paper describes the hydrogen storage properties of Magnesium rich ternary Mg-Ni-Cu films of 1.5 )im thickness using binary Mg-Ni and Mg-Cu as baselines, and aims to elucidate the precise influences of alloying element Cu on the hydrogen sorption kinetics, thermodynamics and cycleability. Mg-rich Mg-Ni-(Cu) alloys show two stages during absorption. The first stage due to the absorption of Mg not alloyed in the form of Mg_2Ni and Mg_2Cu, hereafter denoted as free-Mg, is very quick, but the second one due to the absorption of intermetallic Mg_2Ni and/or Mg_2Cu is significantly slower. This sequence is confirmed by XRD characterizations at different absorption stages. The rapid first stage absorption is mainly catalyzed by the intermetallic phase, Mg_2Ni. Cu substitution improves the desorption kinetics, but severely decreases the kinetics of the second absorption stage. Failure to completely absorb Mg_2Cu to MgH_2 and MgCu_2 in consecutive absorption cycles leads to complete loss of desorption-ability in binary Mg-15 at.%Cu. XRD combined with TEM shows that segregation of Mg_2Cu towards the grain boundaries is responsible for this. Pressure-Composition Isotherms are used to examine the thermodynamic properties of the alloys. The thermodynamic properties of the Low-Temperature (LT-) Mg_2NiH_4 are determined for the first time experimentally, and are found to be AH = -78.6 kJ/mol H_2 and AS = -147.83 J/K-mol H_2. It is found that the Cu substitution has no influence on the plateau pressure of MgH_2 from free-Mg phase, but slightly increases the plateau pressure of LT-Mg_2NiH_4.
机译:本文以二元Mg-Ni和Mg-Cu为基准,描述了厚度为1.5μm的富镁三元Mg-Ni-Cu膜的储氢性能,旨在阐明合金元素Cu对氢吸附动力学的精确影响。 ,热力学和循环能力。富镁的Mg-Ni-(Cu)合金在吸收过程中显示出两个阶段。由于第一阶段是由于未以Mg_2Ni和Mg_2Cu的形式合金化的Mg的吸收,以下称为游离Mg,非常快,但是第二阶段由于金属间化合物Mg_2Ni和/或Mg_2Cu的吸收而明显慢。通过在不同吸收阶段的XRD表征证实了该序列。第一阶段的快速吸收主要是由金属间相Mg_2Ni催化的。铜取代改善了解吸动力学,但严重降低了第二吸收阶段的动力学。在连续的吸收循环中未能完全吸收Mg_2Cu到MgH_2和MgCu_2会导致二元Mg-15 at。%Cu的解吸能力完全丧失。 XRD结合TEM表明,Mg_2Cu向晶界偏析是造成这种现象的原因。压力成分等温线用于检查合金的热力学性质。首次通过实验确定了低温(LT-)Mg_2NiH_4的热力学性质,发现其为AH = -78.6 kJ / mol H_2和AS = -147.83 J / K-mol H_2。发现铜的取代对自由-Mg相的MgH_2的平台压力没有影响,但会稍微增加LT-Mg_2NiH_4的平台压力。

著录项

  • 来源
    《International journal of hydrogen energy》 |2011年第3期|p.2154-2164|共11页
  • 作者单位

    Chemical and Materials Engineering, University of Alberta, National Institute for Nanotechnology, T6G 2V4 Edmonton, Alberta, Canada;

    Chemical and Materials Engineering, University of Alberta, National Institute for Nanotechnology, T6G 2V4 Edmonton, Alberta, Canada;

    Chemical and Materials Engineering, University of Alberta, National Institute for Nanotechnology, T6G 2V4 Edmonton, Alberta, Canada;

    Chemical and Materials Engineering, University of Alberta, National Institute for Nanotechnology, T6G 2V4 Edmonton, Alberta, Canada;

  • 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

    hydrogen storage; magnesium based alloys; cycling stability; thermodynamics; kinetics;

    机译:储氢;镁基合金;循环稳定性;热力学;动力学;

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