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Structural and hydrogen storage properties of melt-spun Mg-Ni-Y alloys

机译:熔纺Mg-Ni-Y合金的结构和储氢性能

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Nanocrystalline magnesium-rich Mg-Ni-Y alloys were produced by melt-spinning. They were characterized regarding their microstructure, crystallization behaviour, and cyclic hydrogenation/dehydrogenation properties in view of their application as reversible hydrogen storage materials. Transmission electron microscopy reveals that these alloys consist in the as-spun state of mixtures of nanocrystalline Mg(Ni;Y) grains that are embedded in an amorphous matrix. Differential scanning calorimetry and X-ray diffraction analysis show that these alloys undergo several crystallization steps in the temperature range between 180 and 370 ℃. It was found that only a few thermal activation cycles of the as-quenched ribbons are required in order to reach excellent hydrogenation/dehydrogenation properties of these alloys. In therrnogravimetric analyses using a magnetic suspension balance it could be shown that these alloys can reach reversible gravimetric hydrogen storage densities of up to 5.3 wt.%-H with hydrogenation and dehydrogenation rates of up to 1 wt.%-H/min even at temperatures of 250 ℃. The structure of the alloys remains nanocrystalline even after several hydrogenation/dehydrogenation cycles.
机译:通过熔融纺丝生产纳米晶富含镁的Mg-Ni-Y合金。考虑到它们作为可逆储氢材料的应用,对它们的微观结构,结晶行为和循环加氢/脱氢特性进行了表征。透射电子显微镜显示,这些合金处于嵌入非晶态基质中的纳米晶Mg(Ni; Y)晶粒混合物的初生状态。差示扫描量热法和X射线衍射分析表明,这些合金在180至370℃的温度范围内经历了多个结晶步骤。已经发现,仅需几个淬火带的热活化循环即可达到这些合金的优异的氢化/脱氢性能。在使用磁悬浮天平的热重分析中,可以证明,即使在高温下,这些合金在高达1 wt。%-H / min的氢化和脱氢速率下也可达到高达5.3 wt。%-H的可逆重量分析储氢密度。 250℃。即使经过几次加氢/脱氢循环,合金的结构仍保持纳米晶体。

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