Reactivity Indices Profile: A Companion Tool of the Potential Energy Surface for the Analysis of Reaction Mechanisms. Nucleophilic Aromatic Substitution Reactions as Test Case
Author
dc.contributor.author
Ormazábal Toledo, Rodrigo
Author
dc.contributor.author
Contreras Ramos, Renato
es_CL
Author
dc.contributor.author
Campodónico, Paola R.
es_CL
Admission date
dc.date.accessioned
2014-03-11T20:11:20Z
Available date
dc.date.available
2014-03-11T20:11:20Z
Publication date
dc.date.issued
2013
Cita de ítem
dc.identifier.citation
J. Org. Chem. 2013, 78, 1091−1097
en_US
Identifier
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dx.doi.org/10.1021/jo3025048
Identifier
dc.identifier.uri
https://repositorio.uchile.cl/handle/2250/119788
General note
dc.description
Artículo de publicación ISI
en_US
Abstract
dc.description.abstract
We herein report on the usefulness of the reactivity indices
profiles along a reaction coordinate. The model is tested to fully describe
the reaction mechanism of the title reactions. Group nucleophilicity and
electrophilicity profiles help describe the bond-breaking/bond-formation
processes and the intramolecular electron density reorganization. The
reactivity indices’ profile analysis is consistently complemented with
hydrogen bonding (HB) effects along the reaction coordinate: the final
outcome of the reaction is determined by the stage at which the HB
complex can be formed. Transition-state structures located for six
reactions studied, including the charged nucleophile thiocyanate, show
that the main stabilizing interaction is that formed between the hydrogen
atom of the nucleophile and the o-NO2 group. This result discards the
role of HB interaction between the nucleophile and the leaving group
previously proposed in the literature.
Reactivity Indices Profile: A Companion Tool of the Potential Energy Surface for the Analysis of Reaction Mechanisms. Nucleophilic Aromatic Substitution Reactions as Test Case