Predicting Regioselectivity in Nucleophilic Aromatic Substitution
Citations Over TimeTop 17% of 2012 papers
Abstract
We have investigated practical and computationally efficient methods for the quantitative prediction of regioisomer distribution in kinetically controlled nucleophilic aromatic substitution reactions. One of the methods is based on calculating the relative stabilities of the isomeric σ-complex intermediates using DFT. We show that predictions from this method can be used quantitatively both for anionic nucleophiles with F(-) as leaving group, as well as for neutral nucleophiles with HF as leaving group. The σ-complex approach failed when the leaving group was Cl/HCl or Br/HBr, both for anionic and neutral nucleophiles, because of difficulties in finding relevant σ-complex structures. An approach where we assumed a concerted substitution step and used such transition state structures gave quantitatively useful results. Our results are consistent with other theoretical works, where a stable σ-complex has been identified in some cases, whereas others have been indicated to proceed via a concerted substitution step.
Related Papers
- → Fluoride ion as a nucleophile and a leaving group in aromatic nucleophilic substitution reactions(1993)67 cited
- → A pragmatic procedure for predicting regioselectivity in nucleophilic substitution of aromatic fluorides(2011)24 cited
- → Regioselective nucleophilic aromatic substitution reactions of 5,7-dinitroquinazoline-4-one and 5,7-dinitroquinazoline-4-thione with methylamine: a mechanistic consideration(2015)12 cited
- Tele-substitutions in Heterocyclic Chemistry.(2011)
- → Cine Substitution of N-Sulfonylindoles(2023)1 cited