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一氧化碳分子在氧缺陷的UO₂(111)单晶和薄膜表面上的耦合。

Coupling of carbon monoxide molecules over oxygen-defected UO2(111) single crystal and thin film surfaces.

作者信息

Senanayake S D, Waterhouse G I N, Idriss H, Madey Theodore E

机构信息

The Department of Chemistry, The University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

Langmuir. 2005 Nov 22;21(24):11141-5. doi: 10.1021/la0519103.

Abstract

While coupling reactions of carbon-containing compounds are numerous in organometallic chemistry, they are very rare on well-defined solid surfaces. In this work we show that the reductive coupling of two molecules of carbon monoxide to C2 compounds (acetylene and ethylene) could be achieved on oxygen-defected UO2(111) single crystal and thin film surfaces. This result allows in situ electron spectroscopic investigation of a typical organometallic reaction such as carbon coupling and extends it to heterogeneous catalysis and solids. By using high-resolution photoelectron spectroscopy (HRXPS) it was possible to track the changes in surface states of the U and O atoms as well as identify the intermediate of the reaction. Upon CO adsorption U cations in low oxidation states are oxidized to U4+ ions; this was accompanied by an increase of the O-to-U surface ratios. The HRXPS C 1s lines show the presence of adsorbed species assigned to diolate species (-OCH=CHO-) that are most likely the reaction intermediate in the coupling of two CO molecules to acetylene and ethylene.

摘要

虽然含碳化合物的偶联反应在有机金属化学中屡见不鲜,但在明确界定的固体表面上却极为罕见。在这项工作中,我们表明,在缺氧的UO₂(111)单晶和薄膜表面上,可以实现两分子一氧化碳还原偶联生成C₂化合物(乙炔和乙烯)。这一结果使得对典型的有机金属反应(如碳偶联反应)进行原位电子能谱研究成为可能,并将其扩展到多相催化和固体领域。通过使用高分辨率光电子能谱(HRXPS),可以追踪U和O原子表面状态的变化,并识别反应中间体。在CO吸附后,低氧化态的U阳离子被氧化为U⁴⁺离子;与此同时,O与U的表面比值增加。HRXPS的C 1s谱线显示存在归属于二醇盐物种(-OCH=CHO-)的吸附物种,这些物种很可能是两分子CO偶联生成乙炔和乙烯反应中的中间体。

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