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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Preparation and Structural Characterization of ZrO2/CuOx/Cu(111) Inverse Model Catalysts
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Preparation and Structural Characterization of ZrO2/CuOx/Cu(111) Inverse Model Catalysts

机译:ZrO2 / CuOx / Cu(111)逆模型催化剂的制备和结构表征

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CO2 hydrogenation to methanol is regarded as a promising reaction to catalytically convert a major greenhouse gas (CO2) into a value-added product (methanol). In the current study, scanning tunneling microscopy (STM) and X-ray photoelectron spectroscopy (XPS) were applied to investigate the growth mode of low coverages (<0.2 ML) of ZrO2 in an inverse ZrO2/CuOx/Cu(111) system, which has the potential to achieve high selectivity for a direct CO2-to-methanol transformation. It was found that the morphology of ZrO2 was strongly affected by the preparation method. The ZrO2/CuOx/Cu(111) model catalyst prepared by the oxidation at 600 K of Zr predeposited on Cu(111) exhibited substantial mixing of ZrO2 and CuOx. In contrast, the direct deposition of Zr under an O-2 ambient over CuOx/Cu(111) at 600 K produced small ZrO2 islands (10-12 nm in size) with a two-dimensional structure (i.e., only one layer of ZrO2). XPS studies indicate that both preparation methods lead to ZrO2/CuOx/Cu(111) surfaces. The model catalyst prepared by the direct deposition of Zr in an O-2 ambient was annealed up to 700 K in an ultrahigh vacuum. Both STM and XPS results suggest no apparent change in ZrO2, while CuOx was reduced at such annealing conditions. The island size of 10-12 nm observed for ZrO2 on Cu(111) is much smaller than those seen for CeO2 (30-50 nm) and ZnO (300-500 nm) on the same substrate, opening the possibility for unique chemical properties.
机译:将二氧化碳氢化至甲醇被认为是催化的温室气体(CO2)催化转化为增值产物(甲醇)的有望反应。在目前的研究中,扫描隧道显微镜(STM)和X射线光电子能谱(XPS)研究了逆ZrO2 / Cux / Cu(111)系统中ZrO2的低覆盖物(<0.2mL)的生长方式,这具有潜力可实现直接CO 2 - 甲醇转化的高选择性。结果发现,ZrO2的形态受到制备方法的强烈影响。通过在Cu(111)上以600k的Zr的氧化在Cu(111)上的氧化锌制备的ZrO2 / CuOx / Cu(111)模型催化剂表现出ZrO 2和CuOx的大量混合。相反,在600k的Cu-2环境下在O-2环境下的直接沉积在600k的Cux / Cu(111)中产生的小ZrO2岛(大小为10-12nm),具有二维结构(即,只有一层ZrO2 )。 XPS研究表明,两种制备方法都导致ZrO2 / CuOx / Cu(111)表面。通过直接沉积Zr在O-2环境中制备的模型催化剂在超高真空中退火高达700k。 STM和XPS结果均表明ZrO2中没有明显的变化,而CUOX在这种退火条件下降低。在Cu(111)上观察到ZrO2的10-12nm的岛大小远小于同一基材上的CeO 2(30-50nm)和ZnO(300-500nm)的那些,打开独特化学性质的可能性。

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