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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Carbon Monoxide Adsorption on Manganese Oxide/Cobalt: an Ambient Pressure X-ray Photoelectron Spectroscopy Study
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Carbon Monoxide Adsorption on Manganese Oxide/Cobalt: an Ambient Pressure X-ray Photoelectron Spectroscopy Study

机译:锰氧化物/钴中的一氧化碳吸附:环境压力X射线光电子体光谱研究

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摘要

MnOx enhances the catalytic activity of Co during Fischer-Tropsch synthesis, increases selectivity toward C5+ products, and decreases methane formation. These desired traits are thought to result from a higher CO adsorption energy and, thus, potentially higher CO coverage. To investigate this, ambient pressure X-ray photoelectron spectroscopy (APXPS) was used to probe the CO coverage of Co foil with increasing MnOx amounts at room temperature. The technique permits the quantification of chemical species on a surface from ultrahigh vacuum to the mbar pressure regime. CO was found to adsorb at both Co and MnOx sites. The electronic effect which results in the promotion of CO adsorption also promotes the adsorption of OH groups from background water vapor pressures. This process competes with CO adsorption, despite the water pressure being similar to 8 orders of magnitude lower than the CO pressure at 1 mbar. Because water is a product of Fischer-Tropsch synthesis, this result has relevance to the understanding of MnOx as a promoter. This finding highlights the importance of considering unexpected contributions of background impurities in APXPS and other ambient pressure surface science techniques.
机译:MNOX增强了CO期间的CO催化活性在Fischer-Tropsch合成期间,增加了对C5 +产物的选择性,并降低了甲烷的形成。认为这些所需的特征是由更高的CO吸附能量产生的,因此可能更高的CO覆盖。为了研究这一点,使用环境压力X射线光电子能谱(APXPS)来探测CO箔的CO覆盖,并在室温下增加MNOX量。该技术允许在来自超高真空到MBAR压力调节的表面上定量化学物质。发现有限公司吸附在同股CO和MNOX位点。导致促进CO吸附的电子效果也促进了OH基团的吸附来自背景水蒸气压力。该过程与CO吸附竞争,尽管水压类似于比1毫巴的CO压力低8个数量级。因为水是富舍托杂交合成的产物,所以该结果与Mnox作为启动子的理解有关。这一发现突出了考虑APXP和其他环境压力表面科学技术中背景杂质意外贡献的重要性。

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