首页> 外文期刊>International journal of hydrogen energy >Formation of lattice strain in MmNi_(4.30-x)Co_xAl_(0.30)Mn_(0.40) (x = 0, 0.75) during hydrogenation
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Formation of lattice strain in MmNi_(4.30-x)Co_xAl_(0.30)Mn_(0.40) (x = 0, 0.75) during hydrogenation

机译:氢化过程中MmNi_(4.30-x)Co_xAl_(0.30)Mn_(0.40)(x = 0,0.75)中晶格应变的形成

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摘要

We investigated the hydrogenation mechanism of MmNi_(4.30)-xCo_xAl_(0.30)Mn_(0.40) (Mm: misch metal, x = 0, 0.75) by means of in situ X-ray diffraction (XRD) measurement. Formation of lattice strain and change of crystallite size for both the solid solution phase and the hydride phase were analyzed by the Rietveld refinement of XRD profiles. In MmNi_(4.30)Al_(0.30)Mn_(0.40). the isotropic lattice strain showed less than 0.8% for both the phases through the whole range of hydrogen content, and anisotropic strain was not observed. The crystallite size for both the phases showed around 100 nm, which did not change significantly during hydrogenation and dehydrogenation. In MmNi_(3.55)Co_(0.75)Al_(0.30)Mn_(0.40), the isotropic strain for both the phases depended on the fraction of each phase. It reached the maximum of 1.2% around the phase fraction of 0.5, while anisotropic strain was not observed. The crystallite size for both the phases showed around 100nm through the whole range of hydrogen content. This result indicates that the solid solution phase changes to the hydride phase domain by domain during hydrogenation.
机译:我们通过原位X射线衍射(XRD)测量研究了MmNi_(4.30)-xCo_xAl_(0.30)Mn_(0.40)(Mm:混合金属,x = 0,0.75)的氢化机理。固溶相和氢化物相的晶格应变的形成和微晶尺寸的变化通过XRD分布图的Rietveld细化进行了分析。在MmNi_(4.30)Al_(0.30)Mn_(0.40)中。在整个氢含量范围内,两相的各向同性晶格应变均小于0.8%,并且未观察到各向异性应变。两个相的微晶尺寸均显示在100 nm左右,在氢化和脱氢过程中没有明显变化。在MmNi_(3.55)Co_(0.75)Al_(0.30)Mn_(0.40)中,两个相的各向同性应变取决于每个相的分数。在0.5的相分数附近达到最大值1.2%,而未观察到各向异性应变。在整个氢含量范围内,两相的微晶尺寸均显示在100nm左右。该结果表明,在氢化期间,固溶体相逐域变化为氢化物相域。

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