Issue 38, 2025

Phospha-Peterson reactions with esters and thioesters: isolation of phosphaalkenes bearing C-heteroatom substituents

Abstract

Several phospha-Peterson routes to phosphaalkenes from silylphosphines and various ester or thioester reagents are investigated. Treatment of MesP(SiMe3)2 with PhCO(OPh) in the presence of KOH (10 mol%) affords the Becker-type phosphaalkene, MesP[double bond, length as m-dash]C(OSiMe3)Ph rather than MesP[double bond, length as m-dash]C(OPh)Ph. Using stoichiometric Li[MesPSiMe3] rather than catalytic KOH permitted isolation of the presumptive phospha-enolate intermediate following ester cleavage, MesP[double bond, length as m-dash]C(OLi)Ph. The analogous MesP[double bond, length as m-dash]C(ONa)Ph was obtained by treating a mixture of MesPH2 and NaOt-Bu with PhC(O)Cl. Both are dimers in the solid-state. Treatment of the rare alkali metal phospha-enolates with Me3SiCl afforded known MesP[double bond, length as m-dash]C(OSiMe3)Ph. When using ε-thiocaprolactone, O[double bond, length as m-dash]CS(CH2)5, as the substrate in the Lewis acid-mediated phospha-Peterson reaction with ArP(SiMe3)2, three new C-chalcogen-substituted phosphaalkenes, RP[double bond, length as m-dash]CS(CH2)5 (R = Mes, m-Xyl, Tripp) were obtained.

Graphical abstract: Phospha-Peterson reactions with esters and thioesters: isolation of phosphaalkenes bearing C-heteroatom substituents

Supplementary files

Article information

Article type
Paper
Submitted
26 Jul 2025
Accepted
04 Sep 2025
First published
05 Sep 2025

Dalton Trans., 2025,54, 14277-14285

Phospha-Peterson reactions with esters and thioesters: isolation of phosphaalkenes bearing C-heteroatom substituents

A. A. Mitchell, P. A. Heine, J. Chang, A. De Paolis, B. O. Patrick and D. P. Gates, Dalton Trans., 2025, 54, 14277 DOI: 10.1039/D5DT01781E

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