Chen Guozhu, Xu Qihui, Yang Ying, Li Cuncheng, Huang Taizhong, Sun Guoxin, Zhang Shuxiang, Ma Dongling, Li Xu
Shandong Provincial Key Laboratory of Fluorine Chemistry and Chemical Materials, School of Chemistry and Chemical Engineering, University of Jinan , Jinan, Shandong 255022, China.
Institut National de la Recherche Scientifique (INRS) , 1650 Boulevard Lionel-Boulet, Varennes, Québec J3X 1S2, Canada.
ACS Appl Mater Interfaces. 2015 Oct 28;7(42):23538-44. doi: 10.1021/acsami.5b06495. Epub 2015 Oct 19.
CeO2-CuO nanorods with mesoporous structure were synthesized by a facile and mild strategy, which involves an interfacial reaction between Ce2(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 °C. Raman spectroscopy, X-ray photoelectron spectroscopy (XPS), and hydrogen temperature-programmed reduction (H2-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.
采用简便温和的策略合成了具有介孔结构的CeO₂ - CuO纳米棒,该策略包括在室温下Ce₂(SO₄)₃前驱体与NaOH乙醇溶液之间的界面反应以获得介孔CeO₂纳米棒,随后对制备好的CeO₂和Cu(CH₃COO)₂进行溶剂热处理。经过溶剂热处理后,CuO物种高度分散在CeO₂纳米棒表面形成CeO₂ - CuO复合材料,该复合材料仍保持介孔特征。初步的CO催化氧化研究表明,CeO₂ - CuO样品表现出极高的催化活性,即使在500℃的高温热处理后,仍观察到高CO转化率且活性无明显损失。拉曼光谱、X射线光电子能谱(XPS)和氢气程序升温还原(H₂ - TPR)分析表明,CeO₂和CuO之间存在强烈的相互作用。此外,发现将CuO物种引入CeO₂会产生氧空位,这很可能是介孔CeO₂ - CuO纳米棒对CO氧化具有高催化活性的原因。