| Title | Enantioselective Hydroformylation of N-Vinyl Carboxamides, Allyl Carbamates, and Allyl Ethers Using Chiral Diazaphospholane Ligands |
| Publication Type | Journal Article |
| Year of Publication | 2010 |
| Authors | McDonald, RI, Wong, GW, Neupane, RP, Stahl, SS, Landis, CR |
| Journal | Journal of the American Chemical Society |
| Volume | 132 |
| Pagination | 14027-14029 |
| Date Published | Oct |
| Accession Number | ISI: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 Title | J. Am. Chem. Soc. |