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Product distributions and rate constants for ion-molecule reactions in water, hydrogen sulfide, ammonia, and methane
122
Citations
49
References
1973
Year
EngineeringAbsolute Rate ConstantsProton-coupled Electron TransferComputational ChemistryChemistryThermal EnergyIon ProcessChemical EngineeringBiophysicsIon ExchangePhysical ChemistryReactivity (Chemistry)HydrogenQuantum ChemistryIon-molecule ReactionsHydrogen SulfideNatural SciencesProton TransferReaction ProcessChemical KineticsRate ConstantsIon Structure
The thermal energy, bimolecular ion-molecule reactions occurring in gaseous water, hydrogen sulfide, ammonia, and methane have been identified and their rate constants determined using ion cyclotron resonance methods. Absolute rate constants were determined for the disappearance of the primary ions by using the trapped ion method, and product distributions were determined for these reactions by using the cyclotron ejection method. Previous measurements are reviewed and compared with the results using the present methods. The relative rate constants for hydrogen-atom abstraction, proton transfer, and charge transfer are also determined for reactions of the parent ions.
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