Chemical Physics Letters, Vol.508, No.1-3, 59-62, 2011
A model S(N)2 reaction'on water' does not show rate enhancement
Molecular dynamics calculations of the benchmark nucleophilic substitution reaction (S(N)2) Cl + CH3Cl are carried out at the water liquid/vapor interface. The reaction free energy profile and the activation free energy are determined as a function of the reactants' location normal to the surface. The activation free energy remains almost constant relative to that in bulk water, despite the fact that the barrier is expected to significantly decrease as the reaction is carried out near the vapor phase. We show that this is due to the combined effects of a clustering of water molecules around the nucleophile and a relatively weak hydration of the transition state. (C) 2011 Elsevier B. V. All rights reserved.