Publication | Closed Access
Synthesis and Characterization of Iron–Nitrogen-Doped Graphene/Core–Shell Catalysts: Efficient Oxidative Dehydrogenation of <i>N</i>-Heterocycles
294
Citations
71
References
2015
Year
Materials ScienceOxygen Reduction ReactionCatalytic ApplicationEngineeringCarbon-based MaterialIron OxidesIndustrial CatalysisEfficient Oxidative DehydrogenationStable Core-shell CatalystsGrapheneNanoheterogeneous CatalysisCatalysisChemistryCarbon SupportCatalyst PreparationIron–nitrogen-doped Graphene/core–shellCatalytic Synthesis
An important goal for nanocatalysis is the development of flexible and efficient methods for preparing active and stable core-shell catalysts. In this respect, we present the synthesis and characterization of iron oxides surrounded by nitrogen-doped-graphene shells immobilized on carbon support (labeled FeOx@NGr-C). Active catalytic materials are obtained in a simple, scalable and two-step method via pyrolysis of iron acetate and phenanthroline and subsequent selective leaching. The optimized FeOx@NGr-C catalyst showed high activity in oxidative dehydrogenations of several N-heterocycles. The utility of this benign methodology is demonstrated by the synthesis of pharmaceutically relevant quinolines. In addition, mechanistic studies prove that the reaction progresses via superoxide radical anions (·O2(-)).
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