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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced hydrogen absorption kinetics by introducing fine eutectic and long-period stacking ordered structure in ternary eutectic Mg-Ni-Y alloy
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Enhanced hydrogen absorption kinetics by introducing fine eutectic and long-period stacking ordered structure in ternary eutectic Mg-Ni-Y alloy

机译:通过在三元共晶Mg-Ni-Y合金中引入精细的共晶和长期堆叠有序结构来增强氢吸收动力学

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摘要

We employ a ternary eutectic Mg76.87Ni12.78Y10.35 alloy to achieve a fine eutectic structure with long-period stacking ordered (LPSO) structure, and investigate the corresponding hydrogen storage behavior. The as-cast Mg76.87Ni12.78Y10.35 alloy is composed of Mg15NiY, Mg2Ni, MgNi4Y and Mg phases. A high density of stacking faults and 14H-type LPSO structures form in the Mg15NiY phase. This fine ternary eutectic structure has shown significant improvement in promotion of the activation and following hydrogen absorption kinetics compared with as-cast non-eutectic structure. Pressure-Composition-Temperature (PCT) curves demonstrate two major pressure platforms due to the presence of Mg15NiY and Mg2Ni in our Mg-Ni-Y alloys. Nanosized Mg(2)NiFl(x), MgH2 and YFI, are in situ generated from the decomposition of LPSO structure during hydrogenation. The fine ternary eutectic structure and dispersed nanocatalysts from decomposition of LPSO structure synergistically facilitate the activation and hydrogen absorption kinetics of ternary eutectic Mg-Ni-Y alloy. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们使用三元共晶Mg76.87NI12.78Y10.35合金以实现具有长期堆叠有序(LPSO)结构的细小共晶结构,并研究相应的储氢行为。 AS铸造Mg76.87Ni12.78Y10.35合金由Mg15niy,Mg2Ni,MgNi4Y和Mg相组成。在Mg15Niy相中,高密度的堆叠故障和14H型LPSO结构形式。这种精细的三元共晶结构表明,与浇铸非共晶结构相比,促进活化和后续氢吸收动力学的显着改善。压力组合 - 温度(PCT)曲线由于我们的Mg-Ni-Y合金中存在Mg15Niy和Mg2Ni而表现出两个主要压力平台。纳米型Mg(2)NiFl(X),MgH2和YFI原位由LPSO结构在氢化过程中产生。来自LPSO结构分解的细三元共晶结构和分散的纳米催化协同促进三元共晶Mg-Ni-Y合金的活化和氢吸收动力学。 (c)2019 Elsevier B.v.保留所有权利。

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