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Nanostructured Ceria-Based Materials: Effect of the Hydrothermal Synthesis Conditions on the Structural Properties and Catalytic Activity

机译:纳米结构的二氧化铈基材料:水热合成条件对结构性质和催化活性的影响

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In this work, several nanostructured ceria catalysts were prepared by means of a hydrothermal procedure, in which the synthesis conditions (i.e., temperature and pH values) were varied. CeO 2 samples of different shapes and structural properties were obtained, namely cubes, rods, cube and nanorod mixtures, and other polyhedra. The prepared materials were tested using four probe catalytic reactions: CO oxidation, NO oxidation, NO x -free soot oxidation, and NO x -assisted soot oxidation. The physicochemical properties of the prepared catalysts were studied by means of complementary techniques (i.e., XRD, N 2 -physisorption at ?196 °C, CO-TPR (temperature-programmed reduction), field emission scanning electron microscopy (FESEM), micro-Raman spectroscopy). The abundance of defects of the catalysts, measured through in-situ Raman spectroscopy at the typical temperatures of each catalytic process, was correlated to the CO and NO oxidation activity of the prepared catalysts, while the soot oxidation reaction (performed in loose conditions), which was hindered by a poor soot-catalyst contact, was found to be less sensitive to the observed structural defects.
机译:在这项工作中,通过水热法制备了几种纳米结构的二氧化铈催化剂,其中合成条件(即温度和pH值)是变化的。获得了具有不同形状和结构特性的CeO 2样品,即立方体,棒,立方体和纳米棒混合物以及其他多面体。使用四种探针催化反应对制备的材料进行测试:CO氧化,NO氧化,无NOx的烟灰氧化和NOx辅助的烟灰氧化。借助互补技术(例如,XRD,N 2-在196°C下的物理吸附,CO-TPR(程序升温还原),场发射扫描电子显微镜(FESEM),显微技术)研究了制备的催化剂的理化性质。拉曼光谱)。在每个催化过程的典型温度下通过原位拉曼光谱法测量的催化剂的大量缺陷与制得的催化剂的CO和NO氧化活性相关,而烟灰氧化反应(在松散条件下进行)发现由于不良的烟灰-催化剂接触而阻碍了它的形成,对观察到的结构缺陷不那么敏感。

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