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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Preparation and characterization of Me2O3-CeO2 (Me = B, Al, Ga, In) mixed oxide catalysts. 2. Preparation by sol-gel method
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Preparation and characterization of Me2O3-CeO2 (Me = B, Al, Ga, In) mixed oxide catalysts. 2. Preparation by sol-gel method

机译:Me2O3-CeO2(Me = B,Al,Ga,In)混合氧化物催化剂的制备与表征。 2.溶胶-凝胶法制备

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摘要

The present work focuses on the combination of ceria mixed with another oxide from group III, using the sol-gel method. B2O3- Al2O3- Ga2O3- or In2O3-CeO2 mixed oxides have been prepared in order to improve the catalytic properties of these materials. The structural, textural, and surface properties of these catalysts have been fully characterized by means of a variety of techniques (Brunauer-Emmett-Teller, BET; X-ray diffraction analysis, XRD; Raman; scanning electron microscopy, SEM; thermogravimetric analysis, TG; and temperature-programmed reduction/oxidation, TPR-TPO). The highest surface area was achieved for the Al2O3-CeO2 mixed oxide. Only the fluorite structure of CeO2 was observed by XRD for all prepared mixed oxides; the presence of oxygen vacancies was proven by Raman spectroscopy. The acid-base properties were estimated by the adsorption of probe molecules (NH3 and SO2); two methods, microcalorimetry and X-ray photoelectron spectroscopy (XPS), have been employed for that purpose. All investigated mixed oxides express surface amphoteric character; however, it seems that surface basicity is more pronounced than surface acidity. The surface bacisity, which is mainly of the Bronsted type, has been found as dependent on the character of the group III metal. Red-ox properties were investigated for the In2O3-CeO2 sample, the achieved degree of reduction being 34%. TPR/TPO experiments performed up to 830 degrees C irreversibly changed the morphology and the structure of the samples, leading to the crystallization of In2O3.
机译:本工作着重于使用溶胶-凝胶法将二氧化铈与第三族另一种氧化物混合而成的混合物。为了改善这些材料的催化性能,已经制备了B 2 O 3 -Al 2 O 3 -Ga 2 O 3-或In 2 O 3 -CeO 2混合氧化物。这些催化剂的结构,结构和表面性质已通过多种技术进行了充分表征(Brunauer-Emmett-Teller,BET; X射线衍射分析,XRD;拉曼;扫描电子显微镜,SEM;热重分析, TG;以及程序升温还原/氧化(TPR-TPO)。 Al2O3-CeO2混合氧化物的表面积最大。 XRD只能观察到所有混合氧化物的CeO2萤石结构。拉曼光谱法证明了氧空位的存在。通过探针分子(NH3和SO2)的吸附来估算酸碱性质;为此,采用了微量量热法和X射线光电子能谱(XPS)这两种方法。所有研究过的混合氧化物均表现出表面两性特征。但是,表面碱性似乎比表面酸性更明显。已经发现,表面碱性主要是布朗斯台德型,取决于III族金属的特性。研究了In2O3-CeO2样品的氧化还原性能,还原度达到34%。在高达830摄氏度的温度下进行的TPR / TPO实验不可逆地改变了样品的形态和结构,导致In2O3结晶。

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