Facile Access to Key Reactive Intermediates in the Pd/PR3-Catalyzed Telomerization of 1,3-Butadiene
Publication date
2010
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Abstract
The Pd-catalyzed telomerization of 1,3-dienes is an important atom-efficient transformation, which effectively adds nucleophiles (NuH, for example, H2O, MeOH, NH3) over two C C coupled dienes in a 1,6- or 3,6-fashion (see Scheme 1).[1] As such, telomerization provides an economically attractive route for the production of C8 bulk chemicals, such as 1- octanol[2] and 1-octene.[3] Pd-catalyzed telomerization is also increasingly explored as a potential route for the valorization of biomass-derived feedstock.[1a] Although the catalytic cycle (Scheme 1) is generally regarded as well understood, only a limited number of studies have been reported that involve the preparation of reactive intermediates.[4–6] Clearly cumbersome preparative methods and the poor stability of [Pd(1,2,3,8-h4-octadien-1,8-diyl)- (PR3)] (B) are limiting further study. As a result the preparation of reactive intermediates derived from commercially relevant ligands (e.g. TPPTS; TPPTS=3,3’,3’’-phosphinidynetris( benzenesulfonic acid) trisodium salt) remains elusive.[7] B mainly acts as a base on NuH during catalysis and is readily converted into [Pd(1,2,3,7,8-h5-octa-2,7-dien-1- yl)(PR3)]+ (C)[4–5] and its derivatives. Both from a synthetic and catalytic point of view, C is the key intermediate as it lies at the focal point of the catalytic cycle and leads via several mechanistic pathways to species such as D, E, and F.
Keywords
Diene ligands, Palladium, Phosphanes, Reactive intermediates, Telomerization
Citation
Hausoul, P J C, Parvulescu, A N, Lutz, M, Spek, A L, Bruijnincx, P C A, Weckhuysen, B M & Gebbink, R J M K 2010, 'Facile Access to Key Reactive Intermediates in the Pd/PR3-Catalyzed Telomerization of 1,3-Butadiene', Angewandte Chemie-International Edition, vol. 49, no. 43, pp. 7972-7975. https://doi.org/10.1002/anie.201003090