Angewandte Chemie International Edition · 2022 · 126 citations · 45 references
Oxygen Reduction ReactionInorganic ChemistryChemical EngineeringEngineeringCovalent Bonded FrameworkMetal-organic PolyhedronEfficient Oxygen ReductionHeterogeneous CatalysisOrganic ChemistryOrr ActivityCatalysisRegulate Active CentersChemistryRedox ChemistryBond StrategyMolecular CatalysisMetal-organic FrameworksIntrinsic Ubs
Unsaturated environment is the key to affect catalytic activity of the oxygen reduction reaction (ORR). Unveiling the effect of unsaturated sites toward ORR activity is of importance due to the vague unsaturated states. Reported here is a proof-of-concept strategy on the evaluation of unsaturated bonds (UBs) on adjacent carbon environment by precisely developing two metal-free vinyl-/azo-decorated covalent organic frameworks (Vinyl-COF and Azo-COF) as catalysts. The as-prepared UB-COFs exhibit good performance than the control Py-COF and comparable to the most reported carbon catalysts. Supported by theory calculations and in situ Raman spectra-electrochemistry, it is revealed that the UBs in organic catalysts can produce para-activation, identifying the para C=N groups as active centers. Importantly, the intrinsic UBs can induce local charge redistribution, and make the molecular skeleton possess high isosurface map distribution, with an efficient affinity for oxygen intermediates.
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