Detalhes do Documento

Rhodium catalyzed hydroformylation of kaurane derivatives: A route to new diter...

Autor(es): Peixoto, Andreia F. cv logo 1 ; Melo, Daniela S. de cv logo 2 ; Fernandes, Tânia F. cv logo 3 ; Fonseca, Yuraima cv logo 4 ; Gusevskaya, Elena V. cv logo 5 ; Silva, Artur M. S. cv logo 6 ; Contreras, Ricardo R. cv logo 7 ; Reyes, Marisela cv logo 8 ; Usubillaga, Alfredo cv logo 9 ; Santos, Eduardo N. dos cv logo 10 ; Pereira, Mariette M. cv logo 11 ; Bayón, J. Carles cv logo 12

Data: 2008

Identificador Persistente: http://hdl.handle.net/10316/5010

Origem: Estudo Geral - Universidade de Coimbra

Assunto(s): Diterpenes; Kauranes; Hydroformylation; Rhodium; Phosphite; Phosphine


Descrição
Kaurenic and grandiflorenic acids are naturally occurring diterpenes whose biological activity has been described. Both acids contain an exocyclic methylenic double bond that allows further functionalization on their structure. In an attempt to expand the number of derivatives of these two natural products, we have undertaken a study on the hydroformylation of the methyl esters of the two acids and the trimethylsilyl ether of kaurenol. These substrates have been hydroformylated by using unmodified Rh catalysts, as well as Rh/PPh3 and Rh/tris-(o-t-butylphenyl)phosphite catalytic systems at 100 °C and 20 bar of CO/H2 (1:1). For the three substrates, the two Rh catalysts modified with P-donor ligands, produced high conversions and chemo- and regioselectivities in the diastereoisomeric pair of linear aldehydes. In all cases, the stereoselectivity observed is strongly dependent of the system used, being the most diastereoselective the least hindered unmodified Rh/CO catalyst. A correlation between the higher diastereoselectivity and the faster [beta]-elimination of the metal-alkyl intermediate observed in the unmodified system is discussed. http://www.sciencedirect.com/science/article/B6TF5-4RVMXFD-3/1/d27e671ad9e0b7fc325dfd0bdf413c76
Tipo de Documento Artigo
Idioma Inglês
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