Study of the Wittig reaction of benzyltriphenylphosphonium salt and benzaldehyde via ylide-mediated phase-transfer catalysis - Substituent and solvent effects
Jj. Hwang et al., Study of the Wittig reaction of benzyltriphenylphosphonium salt and benzaldehyde via ylide-mediated phase-transfer catalysis - Substituent and solvent effects, J MOL CAT A, 142(2), 1999, pp. 125-139
The Wittig reaction of benzyltriphenylphosphonium salt and benzaldehyde in
two-phase organic solvent/water (NaOH) medium was investigated, focusing on
the effects of substituent and organic solvent. The substituents chosen fo
r study include CH3, F, Cl, Br, CH3O, NO2, and CF3. The organic solvents in
clude polar solvents (CHCl3 and CH2Cl2) and nonpolar solvents (n-C6H14, C6H
6, and CCl4). It was found that the rate of agitation was insignificant and
the reaction of benzylidenetriphenylphosphorane and benzaldehyde in the or
ganic phase is the decisive step for determining the Z/E ratio of the produ
ct stilbene. In general, the polar solvents exhibit more favorable Z-select
ivity. The Z/E ratio of the product stilbene may change substantially by in
terchanging the substituents on the benzyl group of phosphorus atom and on
the phenyl group of aryl aldehyde. In contrast to the meta- and para-substi
tuted benzaldehydes and the ortho-substituted benzylidene ylides, the ortho
-substituted benzaldehydes bearing heteroatom substituent exhibit a pronoun
ced enhancement for the Z-selectivity with the order of effectiveness of su
bstituents being CF3 > (Cl, Br)> CH3O > F > NO2. The concerted asynchronous
cycloaddition mechanism involving a four-centered transition state is sugg
ested to be operating in these systems. (C) 1999 Elsevier Science B.V. All
rights reserved.