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首页> 外文期刊>The Journal of Chemical Physics >REACTION SITE SWITCHING IN CARBON MONOXIDE OXIDATION ON PLATINUM (113) - A SPATIAL DISTRIBUTION STUDY OF DESORBING PRODUCT
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REACTION SITE SWITCHING IN CARBON MONOXIDE OXIDATION ON PLATINUM (113) - A SPATIAL DISTRIBUTION STUDY OF DESORBING PRODUCT

机译:铂(113)上一氧化碳氧化中的反应位切换-脱附产物的空间分布研究

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摘要

The reaction sites involved in the CO oxidation were studied on a stepped Pt(113) [or (s)2(111) x (100)] surface through analysis of the spatial distribution of desorbing product CO2. The distribution was measured with angle-resolved thermal desorption spectroscopy, Five CO2 formation peaks are observed during heating of the coadlayer of CO and oxygen, around 370 K (P-1-CO2), 300 K (P-2-CO2), 270 K (P-3-CO2), 235 K (P-4-CO2), and 180 K (P-5-CO2). The reaction sites working: for these CO2 formations depend strongly on the CO and oxygen coverage. Generally, the CO2 formation on the (111) terrace is predominant at high CO coverage, whereas the contribution from the (001) step is enhanced at high oxygen coverage. A mechanism is proposed for this reaction site switching. (C) 1997 American Institute of Physics. [References: 60]
机译:通过分析解吸产物CO2的空间分布,在阶梯状Pt(113)[或(s)2(111)x(100)]表面上研究了涉及CO氧化的反应部位。用角分辨热解吸光谱法测量分布,在加热CO和氧的复合层期间观察到五个CO2形成峰,大约在370 K(P-1-CO2),300 K(P-2-CO2),270 K(P-3-CO2),235 K(P-4-CO2)和180 K(P-5-CO2)。反应部位起作用:对于这些二氧化碳的形成,在很大程度上取决于二氧化碳和氧气的覆盖范围。通常,(111)平台上的CO2形成主要是在高CO覆盖率下,而(001)步骤的贡献在高氧气覆盖率下会增强。提出了用于该反应部位切换的机制。 (C)1997美国物理研究所。 [参考:60]

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