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Ultrasmooth Gold Thin Films by Self-Limiting Galvanic Displacement on Silicon

机译:通过硅上自限电位移实现超光滑金薄膜

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Galvanic displacement (GD), a type of electroless deposition, has been used to obtain ultrasmooth gold thin films on silicon (111). The novel aspect of the method presented herein is the absence of fluoride ions in the liquid phase, and its principal advantage when compared to previous efforts is that the process is inherently self-limiting. The self-limiting factor is due to the fact that in the absence of fluormated species, no silicon oxide is removed during the process. Thus, the maximum gold film thickness is achieved when elemental silicon is no longer available once the surface is oxidized completely during the galvanic displacement process. X-ray photoelectron spectroscopy has been used as a tool for thickness measurement, using the gold to silicon ratio as an analytical signal. Three gold plating solutions with different concentrations of KAuCU (2,0.2, and 0.02 raM) have been used to obtain information about the formation rate of the gold film. This XPS analysis demonstrates the formation of gold films to a maximum thickness of ~3.5 A. Atomic force microscopy is used to confirm surface smoothness, suggesting that the monolayer growth does not follow the Volmer-Weber growth mode, in contrast to the GD process from aqueous conditions with fluorinated species.
机译:电沉积(GD)是一种化学沉积方法,已用于在硅(111)上获得超光滑的金薄膜。本文提出的方法的新颖方面是液相中不存在氟离子,与以前的努力相比,它的主要优点是该方法具有内在的自限性。该自限制因素是由于以下事实:在不存在氟化物的情况下,在该过程中未除去氧化硅。因此,一旦在原电池置换过程中表面被完全氧化,单晶硅不再可用时,金膜的最大厚度就达到了。 X射线光电子能谱法已被用作厚度测量的工具,使用金与硅之比作为分析信号。已使用三种具有不同浓度KAuCU(2,0.2和0.02 raM)的镀金溶液来获取有关金膜形成速率的信息。该XPS分析表明形成了最大厚度约为3.5 A的金膜。原子力显微镜用于确认表面光滑度,表明单层生长不遵循Volmer-Weber生长模式,这与GD工艺从含氟物质的水性条件。

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