Investigation on the Beckmann rearrangement reaction catalyzed by porous solids: MAS NMR and theoretical calculations

Inés Lezcano-González, Mercedes Boronat, Teresa Blasco*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

In the last years, 'in situ' solid-state NMR has been applied to investigate the Beckmann rearrangement of oximes into amides using zeolites and mesoporous materials of different structure containing Brønsted acids or silanol groups as active sites. DFT methods have been applied to model the geometry of the complexes resulting from adsorption of reactants, reaction intermediates and products on clusters representing the zeolite centers, and their 15N and 13C NMR chemical shift calculated theoretically. This article reviews the results reported in the bibliography on the Beckmann rearrangement of various oximes (acetophenone oxime, cyclohexanone oxime and cyclododecanone oxime) mainly using 'in situ' 15N NMR spectroscopy and theoretical calculations, and are compared with those obtained by 'in situ' infrared spectroscopy. The combination of experiment and theory has been shown to be very useful for the interpretation of the NMR spectra and the identification of the species present at different reaction temperatures.

Original languageEnglish
Pages (from-to)120-129
Number of pages10
JournalSolid State Nuclear Magnetic Resonance
Volume35
Issue number2
DOIs
Publication statusPublished - Apr 2009
Externally publishedYes

Keywords

  • 'In situ'
  • N NMR
  • Acetophenone oxime
  • BEA
  • Beckmann rearrangement
  • Beta
  • Cyclododecanone oxime
  • Cyclohexanone oxime
  • DFT
  • H-ZSM-5
  • Mesoporous materials
  • Silicalite-1
  • Solid-state NMR
  • Zeolite

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