Stretching vibration is a spectator in nucleophilic substitution
Author(s) -
Martin Stei,
Eduardo Carrascosa,
Alexander Dörfler,
Jennifer Meyer,
Balázs Olasz,
Gábor Czakó,
Anyang Li,
Hua Guo,
Roland Wester
Publication year - 2018
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aas9544
Subject(s) - substitution (logic) , nucleophilic substitution , vibration , chemistry , physics , computer science , acoustics , medicinal chemistry , programming language
How chemical reactions are influenced by reactant vibrational excitation is a long-standing question at the core of chemical reaction dynamics. In reactions of polyatomic molecules, where the Polanyi rules are not directly applicable, certain vibrational modes can act as spectators. In nucleophilic substitution reactions, CH stretching vibrations have been considered to be such spectators. While this picture has been challenged by some theoretical studies, experimental insight has been lacking. We show that the nucleophilic substitution reaction of F with CHI is minimally influenced by an excitation of the symmetric CH stretching vibration. This contrasts with the strong vibrational enhancement of the proton transfer reaction measured in parallel. The spectator behavior of the stretching mode is supported by both quasi-classical trajectory simulations and the Sudden Vector Projection model.
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