Tandem cyclization of alkynes via rhodium alkynyl and alkenylidene catalysis

ORGN 571

Jung Min Joo, jjoo@princeton.edu, Yu Yuan, and Chulbom Lee, cblee@princeton.edu. Department of Chemistry, Princeton University, Princeton, NJ 08544
A rhodium(I)-catalyzed tandem cyclization of alkynes has been developed. The reaction allows for multiple bond formations to occur at both the α- and β-positions of alkynes under mild conditions to yield a variety of fused ring systems as the products. In the presence of triethylamine and the complex derived from [Rh(COD)Cl]2 and P(4-F-C6H4)3, a terminal alkyne is converted to a rhodium alkynyl species which reacts with a tethered alkyl halide at the β-position to provide a β,β-disubstituted alkenylidene complex. The rhodium alkenylidene species then undergoes additional ring closures with a range of pendent functional groups such as alkene, hydroxyl, and phenyl groups through [2 + 2] cycloaddition, nucleophilic addition, and 6π-electrocyclization processes, respectively.

 

Physical Organic Chemistry, Metal-Mediated Reactions, Asymmetric Reactions and Syntheses
8:00 PM-10:00 PM, Tuesday, August 21, 2007 BCEC -- Exhibit Hall - B2, Poster

Sci-Mix
8:00 PM-10:00 PM, Monday, August 20, 2007 BCEC -- Exhibit Hall - B2, Sci-Mix

Division of Organic Chemistry

The 234th ACS National Meeting, Boston, MA, August 19-23, 2007