Publication | Open Access
Single-Step Process To Prepare CeO<sub>2</sub> Nanotubes with Improved Catalytic Activity
124
Citations
31
References
2009
Year
EngineeringSingle-step ProcessNanoheterogeneous CatalysisNanocatalysisChemistryChemical EngineeringElectron MicroscopyPowder CeoMaterials ScienceCatalytic ApplicationCatalytic MaterialCatalysisElectrochemical ProcessCatalytic ProcessElectrochemistryOxygen Reduction ReactionNanomaterialsAlumina MembraneCatalyst Preparation
CeO(2) nanotubes have been grown electrochemically using a porous alumina membrane as a template. The resulting material has been characterized by means of scanning electron microscopy (SEM), X-ray energy dispersive spectroscopy, high-angle annular dark-field scanning transmission electron microscopy tomography, high-resolution electron microscopy (HREM), and electron energy loss spectroscopy. According to SEM, the outer diameter of the nanotubes corresponds to the pore size (200 nm) of the alumina membrane, and their length ranges between 30 and 40 microm. HREM images have revealed that the width of the nanotube walls is about 6 nm. The catalytic activity of these novel materials for the CO oxidation reaction is compared to that of a polycrystalline powder CeO(2) sample prepared by a conventional route. The activity of the CeO(2) nanotubes is shown to be in the order of 400 times higher per gram of oxide at 200 degrees C (77.2 x 10(-2) cm(3) CO(2) (STP)/(gxs) for the nanotube-shaped CeO(2) and 0.16 x 10(-2) cm(3) CO(2) (STP)/(gxs) for the powder CeO(2)).
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