4.4 Article

DFT characterization of the mechanism for Staudinger/aza-Wittig tandem organocatalysis

Journal

TETRAHEDRON
Volume 75, Issue 13, Pages 1852-1859

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.tet.2019.02.018

Keywords

Staudinger; Aza-Wittig; Organophosphorus; Redox-driven; Density functional theory

Funding

  1. CERCA Programme (Generalitat de Catalunya)
  2. MINECO [CTQ2017-87792-R]
  3. ICIQ
  4. FP7 Marie Curie COFUND fellowship [291787-ICIQ-IPMP]

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A computational simulation with DFT calculations and microkinetic modeling is carried out on a complete catalytic cycle, involving Staudinger ligation, aza-Wittig condensation and phosphine oxide recycle, for non-truncated substrates and catalyst. The Staudinger reaction produces phosphazenes (R3P = NR), also known as iminophosphoranes, from phosphines and organic azides. Electrophilic carbonyl groups react with phospazenes to produce imines and phosphine oxides. Recently the Staudinger reaction and the aza-Wittig condensation have been combined to spawn intramolecular tandems producing cyclic molecules of great pharmaceutical interest (e.g. benzoxazoles). The release of diatomic nitrogen combined with the formation of phosphine oxide represents the driving force of the reaction. The implementation of in situ recycling of the exhausted phosphine oxide into the Staudinger/aza-Wittig tandem improves the scopes and the applicability of the reaction, transforming it into a powerful and versatile synthetic tool. (C) 2019 Elsevier Ltd. All rights reserved.

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