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首页> 外文期刊>Materials transactions >Scanning Transmission Electron Microscopy Characterization of Nanostructured Palladium Film Formed by Dealloying with Citric Acid from Al-N-Pd Mother Alloy Film
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Scanning Transmission Electron Microscopy Characterization of Nanostructured Palladium Film Formed by Dealloying with Citric Acid from Al-N-Pd Mother Alloy Film

机译:用Al-N-Pd母合金薄膜用柠檬酸释放纳米结构钯膜的扫描透射电子显微镜表征

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摘要

A high-purity palladium film with a three-dimensional nanoporous structure was fabricated from a reactive sputtered Al-N-Pd alloy film by a dealloying method that used citric acid chelation. Its characteristic porous structure could be controlled by the concentration of nitrogen gas in the Ar sputtering gas. The added nitrogen gas inhibited the formation of the intermetallic Al4Pd phase in the as-deposited film, thereby improving the purity of Pd in the dealloyed nanoporous Pd film up to 99 at%. Furthermore, the formed structure of the dealloyed film changed with the nitrogen gas concentration during initial sputtering, i.e., the structure of the film could be controlled from a three-dimensional nano-network to an aggregated nanoparticle-like structure with increasing N-2 gas concentration.
机译:通过使用使用柠檬酸螯合的脱盐方法,由具有二维纳米多孔结构的高纯度钯膜由反应性溅射的Al-N-Pd合金膜制成。 其特征多孔结构可以通过溅射气体中的氮气浓度来控制。 添加的氮气抑制了在沉积膜中形成金属间Al4PD相的形成,从而提高了高达99at%的已脱脂纳米多孔Pd膜中Pd的纯度。 此外,在初始溅射期间,通过氮气浓度改变了脱脂膜的形成结构,即,可以从三维纳米网控制膜的结构,以增加N-2气体的聚集的纳米粒子状结构 专注。

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