Diver, S. T. et al.: 2022 Science of Synthesis, 2022/2: Knowledge Updates 2022/2 DOI: 10.1055/sos-SD-110-02196
Knowledge Updates 2022/2

10.20 Phosphorus Analogues of Indolizines

Weitere Informationen

Buch

Herausgeber: Diver, S. T.; Donohoe, T. J.; Joule, J. A.

Autoren: Aitken, R. A. ; Behlow, K. T.; Chandra, D. ; Clark, J. R. ; Gupta, S. S. ; Kumar, R. ; Mills, M. D.; Sharma, U. ; Sloane, S. E.

Titel: Knowledge Updates 2022/2

Print ISBN: 9783132451933; Online ISBN: 9783132451957; Buch-DOI: 10.1055/b000000642

Fachgebiete: Organische Chemie;Chemische Reaktionen, Katalyse;Organometallchemie;Chemische Labormethoden, Stöchiometrie

Science of Synthesis Knowledge Updates



Übergeordnete Publikation

Titel: Science of Synthesis

DOI: 10.1055/b-00000101

Reihenherausgeber: Fuerstner, A. (Editor-in-Chief); Carreira, E. M.; Faul, M.; Kobayashi, S.; Koch, G.; Molander, G. A.; Nevado, C.; Trost, B. M.; You, S.-L.

Typ: Mehrbändiges Werk

 


Abstract

This chapter is a complete revision and update of the earlier Science of Synthesis contribution from 2000 describing methods for the synthesis of phosphorus analogues of indolizines. The previous route to this rare ring system, reaction of a phosphole with dimethyl acetylenedicarboxylate, has now been joined by a metathesis-based method leading to the parent dibenzophosphindolizine and its chalcogen derivatives.

 
  • 1 Quin LD, Comprehensive Heterocyclic Chemistry II. Katritzky AR, Rees CW, Scriven EFV. Elsevier; Oxford 1996. Vol. 2, p 757.
  • 2 Quin LD, Hughes AN, The Chemistry of Organophosphorus Compounds. Hartley FR. Wiley; Chichester, UK 1990. Vol. 1, p 295.
  • 3 Holah DG, Hughes AN, Kleemola D. J. Heterocycl. Chem.. 1978; 15: 1319
  • 4 Tsurusaki A, Matsumoto H, Kamikawa K. Chem. Commun. (Cambridge). 2019; 55: 4909