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Mode-Specific Energy Disposal in the Four-Atom Reaction OH + D <sub>2</sub> → HOD + D
138
Citations
21
References
2000
Year
EngineeringEnergy DisposalComputational ChemistryChemistryElectronic Excited StateHigh-energy Nuclear ReactionPhysicsAtomic PhysicsPhysical ChemistryQuantum ChemistryMode-specific Energy DisposalExcited State PropertySimplest Four-atom ReactionOxygen-deuterium BondNatural SciencesApplied PhysicsQuantum BiologyReaction ProcessChemical Kinetics
Experiments, employing crossed molecular beams, with vibrational state resolution have been performed on the simplest four-atom reaction, OH + D2 --> HOD + D. In good agreement with the most recent quantum scattering predictions, mode-specific reaction dynamics is observed, with vibration in the newly formed oxygen-deuterium bond preferentially excited to v = 2. This demonstrates that quantum theoretical calculations, which in the past decade have achieved remarkable accuracy for three-atom reactions involving three dimensions, have progressed to the point where it is now possible to accurately predict energy disposal in four-atom reactions involving six dimensions.
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