KnowraCatalytic cycleLinked fromLinked fromThe 15 pages that link to Catalytic cycle, each with the reason it gives.All 15Broader topic 2Related 7Narrower topic 6CatalysisBroader topic: It tracks how catalyst participation and regeneration occur across individual reaction steps.Ozone depletionNarrower topic: Chlorine and bromine emerge unchanged from reaction cycles, allowing each atom to destroy many ozone molecules.ChlorofluorocarbonRelated: Chlorine is regenerated during ozone destruction, allowing one atom to destroy many ozone molecules.Heterogeneous catalysisRelated: Surface intermediates must form and release products while leaving active sites available.Acid catalysisRelated: The acid must regain its proton for the catalytic process to continue.Asymmetric catalysisNarrower topic: Asymmetric induction occurs within a catalyst's repeated reaction sequence.HydroformylationNarrower topic: The cycle connects alkene binding, carbonyl insertion, aldehyde release, and catalyst regeneration.Reaction intermediateRelated: Catalytic cycles contain successive catalyst-bound intermediates rather than consuming the catalyst overall.Cross-coupling reactionNarrower topic: Cross-couplings are commonly explained as repeating cycles of catalyst activation, bond formation, and product release.F. Sherwood RowlandRelated: Chlorine atoms released from CFCs destroy ozone through cycles that leave the chlorine available for further reactions.Mario MolinaNarrower topic: Chlorine radicals destroy many ozone molecules because the reactions regenerate the chlorine catalyst.CatalystBroader topic: It shows how a catalyst can participate in intermediate steps yet be restored overall.18-electron ruleRelated: Electron counts help track ligand association and dissociation during organometallic catalysis.Paul J. CrutzenNarrower topic: Ozone depletion occurs through cycles in which reactive species destroy ozone without being consumed.TrichlorofluoromethaneRelated: Chlorine atoms released from CFC-11 destroy many ozone molecules before removal.