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首页> 外文期刊>International journal of hydrogen energy >Improvement of high temperature stability of Pd coating on Ta by HfN intermediate layer
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Improvement of high temperature stability of Pd coating on Ta by HfN intermediate layer

机译:HfN中间层改善Ta上Pd涂层的高温稳定性

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Hafnium nitride (HfN) was chosen as a material for non-porous intermediate layer to improve the high temperature stability of Pd-Ta composite membranes for hydrogen separation. A layer of dense HfN (70 nm) was prepared between Ta substrate and thin Pd film (300 nm), and the high temperature stability of Pd coating was examined by hydrogen absorption experiments at 573 K after the heat treatments at 873 and 973 K. The HfN layer showed obvious hydrogen permeability, though the permeation rate in HfN appeared to be smaller than that in Pd and Ta. In addition, the degradation in coating effects of Pd at elevated temperatures was substantially retarded by HfN layer. Such improved stability was ascribed to retardation of open porosity development in Pd films and interdiffusion between Pd and Ta. It was concluded that HfN is a potential candidate material for intermediate layer to improve high temperature stability of Pd-group 5 metal composite hydrogen separation membranes.
机译:选择氮化(HfN)作为无孔中间层的材料,以提高用于氢分离的Pd-Ta复合膜的高温稳定性。在Ta衬底和Pd薄膜(300 nm)之间制备了一层致密的HfN(70 nm),在873和973 K热处理后,通过573 K的氢吸收实验检查了Pd涂层的高温稳定性。 HfN层显示出明显的氢渗透性,尽管HfN中的渗透率似乎小于Pd和Ta中的渗透率。另外,HfN层基本上抑制了在高温下Pd的涂层效果的降低。稳定性的提高归因于Pd膜中开孔率的发展以及Pd和Ta之间的相互扩散。结论是,HfN是中间层的潜在候选材料,可以提高Pd-Group 5金属复合氢分离膜的高温稳定性。

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