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Hydrogen uptake kinetics of Pd coated FeTi films

机译:Pd涂层FeTi薄膜的氢吸收动力学

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摘要

The kinetics of hydrogen uptake of thin films of FeTi deposited on Si substrates and covered with 20 nm Pd were studied. The films serve as a model system for powdered FeTi, with grains that are (partly) covered with Pd, which serves as a protection for severe oxidation. Two FeTi compositions near the 50/50 composition were studied. The hydrogen uptake kinetics as a function of temperature and pressure were measured by probing the differential pressure between a small hydriding reaction chamber and a reference chamber. Both compositions showed first order kinetics for the largest portion of the uptake. Using results of additional measurements in which the thickness of the layers was varied, a model is proposed in which the uptake proceeds via fast channels through the film, followed by slower diffusion into the bulk. Finally, the influence of oxidation was studied. An FeTi-oxide underneath the Pd layer is a barrier for H diffusion. It was found that by annealing the H uptake rate could be increased. This is probably due to the decomposition of the oxide. Samples partly covered with Pd and partly by FeTi-oxides, obtained by decomposing the fully covered structure by air annealing at 250℃, showed uptake throughout the entire FeTi film with an even faster rate than in a fully covered film. Some explanation with simple models of the observed phenomena is given.
机译:研究了沉积在Si衬底上并覆盖有20 nm Pd的FeTi薄膜的氢吸收动力学。薄膜可作为粉末状FeTi的模型系统,其颗粒(部分)被Pd覆盖,可起到防止严重氧化的作用。研究了接近50/50组成的两种FeTi组成。通过探测小型氢化反应室和参考室之间的压差来测量氢气吸收动力学随温度和压力的变化。两种组合物均表现出最大程度的摄取的一级动力学。利用其中层厚度变化的附加测量结果,提出了一种模型,其中通过快速通道通过薄膜进行吸收,然后缓慢扩散到主体中。最后,研究了氧化的影响。 Pd层下面的FeTi氧化物是H扩散的障碍。已经发现,通过退火,可以提高H的吸收率。这可能是由于氧化物的分解。通过250℃空气退火分解完全覆盖的结构而获得的部分被Pd覆盖并且部分被FeTi氧化物覆盖的样品显示出整个FeTi膜的吸收速率甚至比完全覆盖的膜更快。用观察到的现象的简单模型给出了一些解释。

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