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首页> 外文期刊>International journal of hydrogen energy >Function of aluminum in crystal structure of rare earth-Mg-Ni hydrogen-absorbing alloy and deterioration mechanism of Nd0.9Mg0.1Ni3.5 and Nd0.9Mg0.1Ni3.3Al0.2 alloys
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Function of aluminum in crystal structure of rare earth-Mg-Ni hydrogen-absorbing alloy and deterioration mechanism of Nd0.9Mg0.1Ni3.5 and Nd0.9Mg0.1Ni3.3Al0.2 alloys

机译:铝在稀土Mg-Ni吸氢合金晶体结构中的作用及Nd0.9Mg0.1Ni3.5和Nd0.9Mg0.1Ni3.3Al0.2合金的劣化机理

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We investigated in detail the effect of incorporating Al in the crystal structure of rare earth-Mg-Ni hydrogen-absorbing alloys, which were developed as candidate materials for the metal hydride (MH) negative electrode in commercial Ni-MH batteries, using synchrotron powder X-ray diffraction. Partially substituting the Ni part with Al changes the lattice parameter of the major A(2)B(7) phase, eliminating a mismatch between the AB(2) units and the ABS units. The change of the lattice parameter in the alloy leads to good hydrogen reversibility and good durability. Furthermore, we observed the alloy after 30 hydrogen absorption desorption cycles using a scanning transmission electron microscope image. Consequently, we found that the surface layer of the Nd0.9Mg0.1Ni3.5 alloy had an amorphous state, while the surface layer of the Nd0.9Mg0.1Ni3.3Al0.2 alloy did not. We confirmed that the deterioration mechanism of the Nd0.9Mg0.1Ni3.3Al0.2 alloy was due to partial expansion of the AB(2) unit along the c-axis; the local area of deterioration expanded during the cycling period. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:我们详细研究了将Al掺入稀土Mg-Ni吸氢合金的晶体结构中的作用,该合金是利用同步加速器粉末开发的,可作为商用Ni-MH电池中金属氢化物(MH)负极的候选材料X射线衍射。用Al部分取代Ni部分会更改主要A(2)B(7)相的晶格参数,从而消除AB(2)单元和ABS单元之间的不匹配。合金中晶格参数的变化导致良好的氢可逆性和良好的耐久性。此外,我们使用扫描透射电子显微镜图像观察了30个氢吸收解吸循环后的合金。因此,我们发现Nd0.9Mg0.1Ni3.5合金的表面层具有非晶态,而Nd0.9Mg0.1Ni3.3Al0.2合金的表面层没有非晶态。我们确认,Nd0.9Mg0.1Ni3.3Al0.2合金的劣化机理是由于AB(2)单元沿c轴的部分膨胀所致。在循环期间,局部恶化区域扩大。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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