Publication | Closed Access
Mode-Specific S<sub>N</sub>2 Reaction Dynamics
72
Citations
62
References
2016
Year
EngineeringReaction DynamicsComputational ChemistryChemistryVibronic InteractionMode SpecificityReaction IntermediateMolecular KineticsBiophysicsPhysicsPrototypical Sn2 ReactionPhysical ChemistryReactivity (Chemistry)Quantum ChemistryNon-equilibrium ProcessNatural SciencesReaction ProcessChemical KineticsMicroscopic Dynamics
Despite its importance in chemistry, the microscopic dynamics of bimolecular nucleophilic substitution (SN2) reactions is still not completely elucidated. In this publication, the dynamics of a prototypical SN2 reaction (F(-) + CH3Cl → CH3F + Cl(-)) is investigated using a high-dimensional quantum mechanical model on an accurate potential energy surface (PES) and further analyzed by quasi-classical trajectories on the same PES. While the indirect mechanism dominates at low collision energies, the direct mechanism makes a significant contribution. The reactivity is found to depend on the specific reactant vibrational mode excitation. The mode specificity, which is more prevalent in the direct reaction, is rationalized by a transition-state-based model.
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