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Reactivity of Ultra-Thin ZnO Films Supported by Ag(111) and Cu(lll): A Comparison to ZnO/Pt(111)

机译:Ag(111)和Cu(III)负载的超薄ZnO薄膜的反应性:与ZnO / Pt(111)的比较

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We studied structure and reactivity of ZnO(0001) ultrathin films grown on Ag(111) and Cu(111) single crystal surfaces. Structural characterization was carried out by scanning tunneling microscopy, Auger electron spectroscopy, low-energy electron diffraction, and temperature programmed desorption. The CO oxidation behavior of the films was studied at low temperature (450 K) at near atmospheric pressures using gas chromatography. For ZnO/Cu(111), it is shown that under reaction conditions ZnO readily migrates into the Cu crystal bulk, and the reactivity is governed by a CuO_x oxide film formed in the reaction ambient. In contrast, the planar structure of ZnO films on Ag(111) is maintained, similarly to the previously studied ZnO films on Pt(111). At sub-monolayer coverages, the "inverse" model catalysts are represented by two-monolayer-thick ZnO(0001) islands on Pt(111) and Ag(111) supports. While the CO oxidation rate is considerably increased on ZnO/Pt(111), which is attributed to active sites at the metal/oxide boundary, sub-monolayer ZnO films on Ag(111) did not show such an effect, and the reactivity was inhibited with increasing film coverage. The results are explained by much stronger adsorption of CO on Pt(111) as compared with Ag(111) in proximity to O species at the oxide/metal boundary. In addition, the water-gas shift and reverse water-gas shift reactions were examined on ZnO/Ag(111), which revealed no promotional effect of ZnO on the reactivity of Ag under the conditions studied. The latter finding suggests that wetting phenomena of ZnO on metals does not play a crucial role in the catalytic performance of ZnO-based real catalysts in those reactions.
机译:我们研究了在Ag(111)和Cu(111)单晶表面上生长的ZnO(0001)超薄膜的结构和反应性。通过扫描隧道显微镜,俄歇电子能谱,低能电子衍射和程序升温脱附进行结构表征。使用气相色谱法在接近大气压的低温(450 K)下研究了薄膜的CO氧化行为。对于ZnO / Cu(111),显示出在反应条件下ZnO容易迁移到Cu晶体块中,并且反应性由反应环境中形成的CuO_x氧化膜控制。相反,与先前研究的Pt(111)上的ZnO膜相似,Ag(111)上的ZnO膜的平面结构得以保持。在亚单层覆盖范围内,“逆”模型催化剂由Pt(111)和Ag(111)载体上的两个单层厚ZnO(0001)岛表示。尽管ZnO / Pt(111)上的CO氧化速率显着增加,这归因于金属/氧化物边界上的活性位点,但Ag(111)上的亚单层ZnO膜没有显示出这种作用,并且反应性为随着胶片覆盖率的增加而受到抑制。结果表明,与在氧化物/金属边界处的O物种附近的Ag(111)相比,CO对Pt(111)的吸附要强得多。此外,对ZnO / Ag(111)进行了水煤气变换和逆水煤气变换反应的研究,结果表明在研究条件下ZnO对Ag的反应性没有促进作用。后一个发现表明,在这些反应中,ZnO在金属上的润湿现象在基于ZnO的实际催化剂的催化性能中并不发挥关键作用。

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