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Pd/CeO2-x nanorod catalysts for Co oxidation: Insights into the origin of their regenerative ability at room temperature
Journal article   Peer reviewed

Pd/CeO2-x nanorod catalysts for Co oxidation: Insights into the origin of their regenerative ability at room temperature

Yunyun Zhou, Neil J. Lawrence, Tai-Sing Wu, Jing Liu, Patrick Kent, Yun-Liang Soo and Chin Li Cheung
ChemCatChem
2014

Abstract

Ceria Heterogeneous catalysis Nanostructures Oxidation Palladium
The decrease in the activity of a catalyst after use is a persistent challenge in the chemical industry. We report that palladium-decorated ceria (Pd/CeO <sub>2-x</sub> , in which 0≤x<0.5) nanorod catalysts demonstrate regenerative ability for carbon monoxide oxidation at room temperature. Pd/CeO <sub>2-x</sub> catalysts with 75% decreased catalytic activity can be regenerated and restored almost 100% of their original catalytic activity by exposing them to ambient conditions for 24h. X-ray spectroscopy studies of the atomic structures and oxidation states of palladium in the catalyst found that the formation of disordered palladium oxide is partly accountable for its observed regenerative catalytic property. © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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