Chemical Communications · 2019 · 43 citations · 42 references
EngineeringProton-coupled Electron TransferOrganometallic ElectrochemistryOrganic ChemistryChemistryHydrogen GenerationChemical EngineeringCathodic RegenerationOrganic ElectrochemistryElectrochemical RegenerationMolecular ElectrochemistryCatalysisHydrogenElectrochemistryBiomolecular EngineeringOrganic HydridesRapid DimerizationProton TransferElectrosynthesis
Electrochemical regeneration of organic hydrides is often hindered by the rapid dimerization of organic radicals produced as the first intermediates of these electrochemical transformations. In this work, we utilize proton-coupled electron transfer to outcompete the undesired dimerization and achieve successful hydride regenerations of two groups of organic hydrides - acridines and benzimidazoles. This work provides an analysis of the critical factors that control the regeneration pathways of organic hydrides.
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