4.8 Article

Transition metal loaded silicon carbide-derived carbons with enhanced catalytic properties

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CARBON
卷 50, 期 5, 页码 1861-1870

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2011.12.036

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  1. Deutsche Forschungsgemeinschaft [1181]
  2. Annette Wittebrock for laboratory
  3. Technische Universitat Berlin for TEM

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Carbide-derived carbons (CDC) with incorporated transition metal nanoparticles (similar to 2.5 nm) were prepared using a microemulsion approach. Time-consuming post synthesis functionalization of the carbon support material can thus be avoided and nanoparticle sizes can be controlled by changing the microemulsion composition. This synthesis strategy is a technique for the preparation of highly porous carbon materials with a catalytically active component. In particular we investigated the integration of ruthenium, palladium, and platinum in a concentration ranging from 4.45 to 12 wt.%. It was found that the transition metal has a considerable influence on sorption properties of resulting nanoparticle-CDC composite materials. Depending on the used metal salt additive the surface area and the pore volume ranges from 1480 m(2)/g and 1.25 cm(3)/g for Pt to 2480 m(2)/g and 2.0 cm(3)/g for Ru doped carbons. Moreover, members of this material class show impressive properties as heterogeneous catalysts. The liquid phase oxidation of tetralin and the partial oxidation of methane were studied, and electrochemical applications were also investigated. Primarily Pt doped CDCs are highly active in the oxygen reduction reaction, which is of great importance in present day fuel cell research. (C) 2012 Elsevier Ltd. All rights reserved.

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