Publication | Open Access
Surface active sites on Co3O4 nanobelt and nanocube model catalysts for CO oxidation
262
Citations
20
References
2010
Year
Materials ScienceOxygen Reduction ReactionChemical EngineeringSurface Active SitesEngineeringCo3o4 NanobeltCo3o4 NanobeltsNanomaterialsNanotechnologyCo OxidationCatalytic MaterialSingle-atom CatalystNanoheterogeneous CatalysisCatalysisChemistryCatalyst PreparationNanocube Model CatalystsCo3o4 Nanocubes
CO oxidation has been performed on Co3O4 nanobelts and nanocubes as model catalysts. The Co3O4 nanobelts which have a predominance of exposed {011} planes are more active than Co3O4 nanocubes with exposed {001} planes. Temperature programmed reduction of CO shows that Co3O4 nanobelts have stronger reducing properties than Co3O4 nanocubes. The essence of shape and crystal plane effect is revealed by the fact that turnover frequency of Co3+ sites of {011} planes on Co3O4 nanobelts is far higher than that of {001} planes on Co3O4 nanocubes.
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