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The influence of the nanostructure on the effect of CO2 on the properties of Pd–Ag thin-film for H2 separation

机译:纳米结构对CO 2 对pd-ag薄膜H 2 分离性能影响的影响

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摘要

The use of co-deposition instead of sequential deposition during the preparation of Pd-Ag thin films by electroless plating deposition leads to two different nanostructures, e.g. a dendritic nanostructure or a more compact and dense film, allowing to analyze the role of this parameter, at equal membrane composition, on the performances. In pure H2the permeability to hydrogen of the second type of thin films is 3-4 times higher, but the presence of CO2 in the feed changes considerably the performances. The results are tentatively interpreted on the basis of a non-permanent in-situ modification of the characteristics of the Pd-Ag thin films, with creation of strains and microholes particularly enhanced for the nanostructure present in the sample prepared by co-deposition. These strains and microholes are suggested to derive from the combined effect of CO2 (with creation of subsurface O and/or C) and of hydrogen diffusion through the thin film, which induces lattice expansion and stress on the nanograins. When the flux of H2 stops, there is a relatively rapid restoring of the initial situation. SEM characterization after the tests in the presence of CO2 indicates the presence of desintering consistently with above indications and the creation of crack-like voids.
机译:在通过化学镀沉积制备Pd-Ag薄膜期间,使用共沉积而不是顺序沉积导致两种不同的纳米结构,例如纳米结构。树状纳米结构或更致密致密的膜,可以分析该参数在相同膜组成下对性能的作用。在纯氢气中,第二种薄膜对氢的渗透性要高3-4倍,但进料中存在的二氧化碳会大大改变性能。暂时基于对Pd-Ag薄膜特性的非永久性原位修饰,并通过共沉积制备的样品中存在的纳米结构,特别是增强了应变和微孔的产生,对结果进行了初步解释。这些应变和微孔被认为是源于CO2(产生表面下的O和/或C)和氢通过薄膜扩散的综合作用,这会在纳米颗粒上引起晶格膨胀和应力。当H2的通量停止时,初始状态会相对较快地恢复。在存在二氧化碳的情况下进行测试后的SEM表征表明,存在与上述指示一致的去烧结现象,并且出现了类似裂纹的空隙。

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