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首页> 外文期刊>The Journal of Chemical Physics >Influence of leaching on surface composition, microstructure, and valence band of single grain icosahedral Al-Cu-Fe quasicrystal
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Influence of leaching on surface composition, microstructure, and valence band of single grain icosahedral Al-Cu-Fe quasicrystal

机译:浸出对单晶二十面体Al-Cu-Fe准晶体的表面组成,微观结构和价带的影响

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The use of quasicrystals as precursors to catalysts for the steam reforming of methanol is potentially one of the most important applications of these new materials. To develop application as a technology requires a detailed understanding of the microscopic behavior of the catalyst. Here, we report the effect of leaching treatments on the surface microstructure, chemical composition, and valence band of the icosahedral (i-) Al-Cu-Fe quasicrystal in an attempt to prepare a model catalyst. The high symmetry fivefold surface of a single grain i-Al-Cu-Fe quasicrystal was leached with NaOH solution for varying times, and the resulting surface was characterized by x-ray photoelectron spectroscopy (XPS), ultraviolet photoelectron spectroscopy (UPS), scanning electron microscopy (SEM), and atomic force microscopy (AFM). The leaching treatments preferentially remove Al producing a capping layer consisting of Fe and Cu oxides. The subsurface layer contains elemental Fe and Cu in addition to the oxides. The quasicrystalline bulk structure beneath remains unchanged. The subsurface gradually becomes Fe3O4 rich with increasing leaching time. The surface after leaching exhibits micron sized dodecahedral cavities due to preferential leaching along the fivefold axis. Nanoparticles of the transition metals and their oxides are precipitated on the surface after leaching. The size of the nanoparticles is estimated by high resolution transmission microscopy to be 5-20 nm, which is in agreement with the AFM results. Selected area electron diffraction (SAED) confirms the crystalline nature of the nanoparticles. SAED further reveals the formation of an interface between the high atomic density lattice planes of nanoparticles and the quasicrystal. These results provide an important insight into the preparation of model catalysts of nanoparticles for steam reforming of methanol. (C) 2015 AIP Publishing LLC.
机译:将准晶体用作甲醇蒸汽重整催化剂的前体可能是这些新材料最重要的应用之一。为了开发作为一种技术的应用,需要对催化剂的微观行为有详细的了解。在这里,我们报告了浸出处理对二十面体(i-)Al-Cu-Fe准晶体的表面微观结构,化学成分和价带的影响,以试图制备模型催化剂。用NaOH溶液对单晶i-Al-Cu-Fe准晶体的高对称五重表面进行浸提不同的时间,并通过X射线光电子能谱(XPS),紫外光电子能谱(UPS),扫描对特征表面进行表征。电子显微镜(SEM)和原子力显微镜(AFM)。浸出处理优先去除Al,产生由Fe和Cu氧化物组成的覆盖层。除了氧化物之外,该地下层还包含元素Fe和Cu。下面的准晶体块状结构保持不变。随着浸出时间的增加,地下逐渐富含Fe3O4。浸出后的表面由于沿五重轴的优先浸出而表现出微米级的十二面体腔。浸出后,过渡金属的纳米颗粒及其氧化物沉淀在表面上。通过高分辨率透射显微术估计纳米颗粒的尺寸为5-20nm,这与AFM结果一致。选定区域的电子衍射(SAED)证实了纳米颗粒的晶体性质。 SAED进一步揭示了纳米粒子的高原子密度晶格平面与准晶体之间的界面形成。这些结果为用于甲醇蒸汽重整的纳米颗粒模型催化剂的制备提供了重要的见识。 (C)2015 AIP Publishing LLC。

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