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首页> 外文期刊>Journal of Colloid and Interface Science >TPR, TPO, and TPD examinations of Cu0.15Ce0.85O2-y mixed oxides prepared by co-precipitation, by the sol-gel peroxide route, and by citric acid-assisted synthesis
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TPR, TPO, and TPD examinations of Cu0.15Ce0.85O2-y mixed oxides prepared by co-precipitation, by the sol-gel peroxide route, and by citric acid-assisted synthesis

机译:通过共沉淀,溶胶-凝胶过氧化物途径和柠檬酸辅助合成制备的Cu0.15Ce0.85O2-y混合氧化物的TPR,TPO和TPD检查

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摘要

Temperature-programmed reduction (TPR), oxidation (TPO), and desorption (TPD) studies were performed on three copper-ceria mixed oxide samples having the same nominal composition, Cu0.15Ce0.85O2-y, but prepared in three different ways: by co-precipitation, the sol-gel peroxide route, and the sol-gel citric acid route. The obtained results reveal that despite a drastic initial drop in specific surface area after consecutive redox cycles, the hydrogen consumption remains constant. This is because CuO is highly dispersed over the surface of CeO2 nanocrystallites and remains highly dispersed even after the agglomeration of CeO2 nanocrystallites in a denser secondary structure. The dispersed CuO is reduced to Cu-0 during the TPR, forming agglomerated metal particles on the surface of partially reduced CeO2. However, after subsequent temperature-programmed oxidation all the Cu-0 is oxidized back into CuO and redispersed over the CeO2 crystallites. (c) 2004 Elsevier Inc. All rights reserved.
机译:对三种具有相同标称组成Cu0.15Ce0.85O2-y但以三种不同方式制备的铜-二氧化铈混合氧化物样品进行了程序升温还原(TPR),氧化(TPO)和解吸(TPD)研究:通过共沉淀,溶胶-凝胶过氧化物途径和溶胶-柠檬酸途径。所获得的结果表明,尽管在连续的氧化还原循环后比表面积最初急剧下降,但是氢消耗保持恒定。这是因为CuO高度分散在CeO2纳米晶体的表面上,并且即使在更密实的二级结构中CeO2纳米晶体的团聚之后也保持高度分散。在TPR期间,分散的CuO被还原为Cu-0,从而在部分还原的CeO2的表面上形成附聚的金属颗粒。然而,在随后的程序升温氧化之后,所有的Cu-0都被氧化成CuO,并重新分散在CeO2晶体上。 (c)2004 Elsevier Inc.保留所有权利。

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