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氧在金纳米晶面和模型团簇上的吸附

Oxygen adsorption on gold nanofacets and model clusters.

作者信息

Visart de Bocarmé T, Chau T-D, Tielens F, Andrés J, Gaspard P, Wang R L C, Kreuzer H J, Kruse N

机构信息

Chemical Physics of Materials, Université Libre de Bruxelles, Campus Plaine, CP 243, 1050 Brussels, Belgium.

出版信息

J Chem Phys. 2006 Aug 7;125(5):054703. doi: 10.1063/1.2227396.

Abstract

We have studied oxygen interaction with Au crystals (field emitter tips) using time-resolved (atom-probe) field desorption mass spectrometry. The results demonstrate no adsorption to take place on clean Au facets under chosen conditions of pressures (p < 10(-4) m/bar) and temperatures (T = 300-350 K). Steady electric fields of 6 V/nm do not allow dissociating the oxygen molecule. The measured O2+ intensities rather reflect ionization of O2 molecules at critical distances above the Au tip surface. Certain amounts of Au-O2 complex ions can be found at the onset of Au field evaporation. Calculations by density functional theory (DFT) show weak oxygen end-on interaction with Au10 clusters (Delta E = 0.023 eV) and comparatively stronger interaction with Au1/Au(100) model surfaces (Delta E = 0.25 eV). No binding is found on {210} facets. Including (positive) electric fields in the DFT calculations leads to an increase of the activation energy for oxygen dissociation thus providing an explanation for the absence of atomic oxygen ions from the field desorption mass spectra.

摘要

我们使用时间分辨(原子探针)场解吸质谱法研究了氧气与金晶体(场发射体尖端)的相互作用。结果表明,在选定的压力(p < 10^(-4) m/bar)和温度(T = 300 - 350 K)条件下,清洁的金晶面上不会发生吸附。6 V/nm的稳定电场无法使氧分子解离。测得的O2+强度反映的是氧分子在金尖端表面上方临界距离处的电离情况。在金场蒸发开始时可以发现一定量的Au - O2复合离子。密度泛函理论(DFT)计算表明,氧与Au10团簇存在较弱的端对端相互作用(ΔE = 0.023 eV),与Au1/Au(100)模型表面的相互作用相对较强(ΔE = 0.25 eV)。在{210}晶面上未发现结合现象。在DFT计算中加入(正)电场会导致氧解离活化能增加,从而解释了场解吸质谱中没有原子氧离子的原因。

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