Enantioselective Hydroformylation of N-Vinyl Carboxamides, Allyl Carbamates, and Allyl Ethers Using Chiral Diazaphospholane Ligands

TitleEnantioselective Hydroformylation of N-Vinyl Carboxamides, Allyl Carbamates, and Allyl Ethers Using Chiral Diazaphospholane Ligands
Publication TypeJournal Article
Year of Publication2010
AuthorsMcDonald, RI, Wong, GW, Neupane, RP, Stahl, SS, Landis, CR
JournalJournal of the American Chemical Society
Volume132
Pagination14027-14029
Date PublishedOct
Accession NumberISI:000282660100027
Keywords(+)-discodermolide, alkenes, Catalyzed asymmetric hydroformylation, Chemistry, Multidisciplinary, derivatives, enamides, rhodium(i) complexes, scale, Synthesis
Abstract

Rhodium complexes of diazaphospholane ligands catalyze the asymmetric hydroformylation of N-vinyl carboxamides, allyl ethers, and allyl carbamates; products include 1,2- and 1,3-aminoaldehydes and 1,3-alkoxyaldehydes. Using glass pressure bottles, short reaction times (generally less than 6 h), and low catalyst loading (commonly 0.5 mol %), 20 substrates are successfully converted to chiral aldehydes with useful regioselectivity and high enantioselectivity (up to 99% ee). Chiral Roche aldehyde is obtained with 97% ee from the hydroformylation of allyl silyl ethers. Commonly difficult substrates such as 1,1- and 1,2-disubstituted alkenes undergo effective hydroformylation with 89-97% ee and complete conversion for six examples. Palladium-catalyzed aerobic oxidative amination of allyl benzyl ether followed by enantioselective hydroformylation yields the beta(3)-aminoaldehyde with 74% ee.

Short TitleJ. Am. Chem. Soc.