Reactivity in the nucleophilic aromatic substitution reactions of pyridinium ions

Org Biomol Chem. 2014 Aug 28;12(32):6175-80. doi: 10.1039/c4ob00946k.

Abstract

The "element effect" in nucleophilic aromatic substitution reactions (SNAr) is characterized by the leaving group order, L = F > NO2 > Cl ≈ Br > I, in activated aryl substrates. A different leaving group order is observed in the substitution reactions of ring-substituted N-methylpyridinium compounds with piperidine in methanol: 2-CN ≥ 4-CN > 2-F ∼ 2-Cl ∼ 2-Br ∼ 2-I. The reactions are second-order in [piperidine], the mechanism involving rate determining hydrogen-bond formation between piperidine and the substrate-piperidine addition intermediate followed by deprotonation of this intermediate. Computational results indicate that deprotonation of the H-bonded complex is probably barrier free, and is accompanied by simultaneous loss of the leaving group (E2) for L = Cl, Br, and I, but with subsequent, rapid loss of the leaving group (E1cB-like) for the poorer leaving groups, CN and F. The approximately 50-fold greater reactivity of the 2- and 4-cyano substrates is attributed to the influence of the electron withdrawing cyano group in the deprotonation step. The results provide another example of β-elimination reactions poised near the E2-E1cB mechanistic borderline.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Electrons*
  • Hydrocarbons, Aromatic / chemistry*
  • Hydrogen Bonding
  • Ions
  • Kinetics
  • Molecular Conformation
  • Piperidines / chemistry
  • Protons
  • Pyridinium Compounds / chemistry*

Substances

  • Hydrocarbons, Aromatic
  • Ions
  • Piperidines
  • Protons
  • Pyridinium Compounds