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Deuterium absorption in Mg70Al30 thin films with bilayer catalysts: a comparative neutron reflectometry study

机译:双层催化剂在Mg70Al30薄膜中的氘吸收:比较中子反射法研究

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摘要

We present a neutron reflectometry study of deuterium absorption in thin films of Al-containing Mg alloys capped with a Ta/Pd, Ni/Pd and Ti/Pd-catalyst bilayer. The measurements were performed at room temperature over the 0 1 bar pressure range under quasi-equilibrium conditions. The modeling of the measurements provided a nanoscale representation of the deuterium profile in the layers at different stages of the absorption process. The absorption mechanism observed was found to involve spillover of atomic deuterium from the catalyst layer to the Mg alloy phase, followed by the deuteration of the Mg alloy. Complete deuteration of the Mg alloy occurs in a pressure range between 100 and 500 mbar, dependent on the type of bilayer catalyst. The use of a Ti/Pd bilayer catalyst yielded the best results in terms of both storage density and kinetic properties.
机译:我们提出了中子反射计研究氘在Ta / Pd,Ni / Pd和Ti / Pd催化剂双层覆盖的含Al镁合金薄膜中的氘吸收。在准平衡条件下于室温在0 1 bar压力范围内进行测量。测量的模型化提供了在吸收过程的不同阶段的层中氘分布的纳米级表示。发现观察到的吸收机理涉及原子氘从催化剂层向Mg合金相的溢出,随后是Mg合金的氘化。根据双层催化剂的类型,镁合金的完全氘代会在100至500 mbar的压力范围内发生。就储存密度和动力学性质而言,使用Ti / Pd双层催化剂可获得最佳结果。

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