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Facile and Mild Strategy to Construct Mesoporous CeO2-CuO Nanorods with Enhanced Catalytic Activity toward CO Oxidation

机译:构建具有增强的CO氧化催化活性的中孔CeO2-CuO纳米棒的简便而温和的策略

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摘要

CeO2-CuO nanorods with mesoporous structure were synthesized by a facile and mild strategy, which involves an interfacial reaction between Ce-2(SO4)(3) precursor and NaOH ethanol solution at room temperature to obtain mesoporous CeO2 nanorods, followed by a solvothermal treatment of as-prepared CeO2 and Cu(CH3COO)(2). Upon solvothermal treatment, CuO species is highly dispersed onto the CeO2 nanorod surface to form CeO2 CuO composites, which still maintain the mesoporous feature. A preliminary CO catalytic oxidation study demonstrated that the CeO2-CuO samples exhibited strikingly high catalytic activity, and a high CO conversion rate was observed without obvious loss in activity even after thermal treatment at a high temperature of 500 degrees C. Raman spectroscopy, X-ray photoelectron spectroscopy (XPS), and hydrogen temperature-programmed reduction (H-2-TPR) analysis revealed that there is a strong interaction between CeO2 and CuO. Moreover, it was found that the introduction of CuO species into CeO2 generates oxygen vacancies, which is highly likely to be responsible for high catalytic activity toward CO oxidation of the mesoporous CeO2-CuO nanorods.
机译:通过简便,温和的策略合成具有介孔结构的CeO2-CuO纳米棒,该方法涉及在室温下Ce-2(SO4)(3)前体与NaOH乙醇溶液之间的界面反应以获得介孔CeO2纳米棒,然后进行溶剂热处理制备的CeO2和Cu(CH3COO)(2)。溶剂热处理后,CuO物种高度分散在CeO2纳米棒表面上,形成了仍保持中孔特征的CeO2 CuO复合材料。初步的CO催化氧化研究表明,CeO2-CuO样品表现出惊人的高催化活性,即使在500摄氏度的高温下进行热处理后,也观察到高的CO转化率,而活性没有明显损失。射线光电子能谱(XPS)和氢程序升温还原(H-2-TPR)分析表明,CeO2和CuO之间存在很强的相互作用。此外,已经发现将CuO种类引入CeO 2产生氧空位,这很可能是介孔CeO 2 -CuO纳米棒对CO氧化的高催化活性的原因。

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