首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hydrogen storage properties of Mg/Cu and Mg/Pd laminate composites and metallographic structure
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Hydrogen storage properties of Mg/Cu and Mg/Pd laminate composites and metallographic structure

机译:Mg / Cu和Mg / Pd层合物的储氢性能及金相结构

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摘要

The Mg-based laminate composites, Mg/Cu and Mg/Pd, were prepared by repetitive-rolling, which is considered to suit for mass production. Mg/Cu laminate composites (Mg/Cu velence 2) absorb and desorb hydrogen reversibly at 473 K, and the laminate composites have a better reaction kinetics than melting-casting alloys. TEM observations revealed that the as-rolled Mg-based laminate composite had the sub-micrometer-ordered layered structure with dense dislocations and vacancies. After initial activation and dehydrogenation process, the samples have kept the sub-micrometer-ordered laminate structure with dense dislocations and vacancies. The nano-structure of Mg-based laminate composites leads to lower hydrogen desorption temperature and better kinetics, which would contribute to achieve high capacity hydrogen storage materials. In Mg/Pd laminate composites (Mg/Pd velence 6), Mg_6Pd is formed during initial activation process. This Mg_6Pd also can store hydrogen reversibly through the disproportionation and recombination process.
机译:镁基层压复合材料Mg / Cu和Mg / Pd是通过重复轧制制备的,被认为适合大规模生产。 Mg / Cu层压复合材料(Mg / Cu velence 2)在473 K下可逆地吸收和解吸氢,并且该层压复合材料比熔铸合金具有更好的反应动力学。 TEM观察显示,轧制的Mg基层压复合材料具有亚微米级的层状结构,具有致密的位错和空位。经过最初的活化和脱氢过程后,样品保持了亚微米级的层状结构,具有密集的位错和空位。镁基层压复合材料的纳米结构导致较低的氢解吸温度和更好的动力学,这将有助于实现高容量的储氢材料。在Mg / Pd层压复合材料(Mg / Pd含量6)中,Mg_6Pd在初始活化过程中形成。该Mg_6Pd还可以通过歧化和重组过程可逆地存储氢。

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