Amatore Christian, Godin Béatrice, Jutand Anny, Lemaître Frédéric
Ecole Normale Supérieure, Département de Chimie, UMR CNRS-ENS-UPMC 8640, 24 Rue Lhomond, 75231 Paris Cedex 5, France.
Chemistry. 2007;13(7):2002-11. doi: 10.1002/chem.200600153.
The regioselectivity of the Heck reaction is supposed to be highly affected by the electronic properties of the alkene and the ionic or neutral character of the aryl palladium(II) complexes involved in the reaction with alkenes. In Heck reactions performed in dmf, Pd(dppp){dppp(O)}Ph (dppp=1,2-bis(diphenylphosphino)propane) is generated in the oxidative addition of PhI with Pd(0)(dppp)(OAc) formed in situ from Pd(OAc)(2) associated to two equivalents of dppp. Pd(dppp){dppp(O)}Ph is not very reactive with alkenes (styrene or methyl acrylate); however, it reacts with iodide ions (released in the catalytic reactions) to give [Pd(dppp)IPh] and with acetate ions (used as base) to give [Pd(dppp)(OAc)Ph]. [Pd(dppp)(OAc)Ph] reacts with styrene and methyl acrylate exclusively by an ionic mechanism, that is, via the cationic complex Pd(dppp)(dmf)Ph formed by dissociation of the acetate ion. The reaction of [Pd(dppp)IPh] is more complex and substrate dependent. It reacts with styrene exclusively by the ionic mechanism via Pd(dppp)(dmf)Ph. [Pd(dppp)IPh] (neutral mechanism) and Pd(dppp)(dmf)Ph (ionic mechanism) react in parallel with methyl acrylate. Pd(dppp)(dmf)Ph is more reactive than [Pd(dppp)IPh] but is always generated at lower concentration.
Heck反应的区域选择性被认为受烯烃的电子性质以及与烯烃反应中涉及的芳基钯(II)配合物的离子或中性性质的高度影响。在N,N-二甲基甲酰胺(dmf)中进行的Heck反应中,PhI与由Pd(OAc)₂与两当量的1,2-双(二苯基膦基)丙烷(dppp)原位形成的[Pd(0)(dppp)(OAc)]⁻进行氧化加成反应时,会生成[Pd(dppp){dppp(O)}Ph]⁺。[Pd(dppp){dppp(O)}Ph]⁺与烯烃(苯乙烯或丙烯酸甲酯)的反应活性不是很高;然而,它会与(催化反应中释放的)碘离子反应生成[Pd(dppp)IPh],并与用作碱的醋酸根离子反应生成[Pd(dppp)(OAc)Ph]。[Pd(dppp)(OAc)Ph]与苯乙烯和丙烯酸甲酯的反应仅通过离子机制进行,即通过醋酸根离子解离形成的阳离子配合物[Pd(dppp)(dmf)Ph]⁺进行反应。[Pd(dppp)IPh]的反应更为复杂且取决于底物。它与苯乙烯仅通过离子机制经由[Pd(dppp)(dmf)Ph]⁺进行反应。[Pd(dppp)IPh](中性机制)和[Pd(dppp)(dmf)Ph]⁺(离子机制)与丙烯酸甲酯平行反应。[Pd(dppp)(dmf)Ph]⁺比[Pd(dppp)IPh]反应活性更高,但生成浓度始终较低。