Abstract
To develop more active catalysts for the rhodium-catalyzed addition of carboxylic acids to terminal alkynes furnishing anti-Markovnikov Z enol esters, a thorough study of the rhodium complexes involved was performed. A number of rhodium complexes were characterized by NMR, ESI-MS, and X-ray analysis and applied as catalysts for the title reaction. The systematic investigations revealed that the presence of chloride ions decreased the catalyst activity. Conversely, generating and applying a mixture of two rhodium species, namely, [Rh(DPPMP)2][H(benzoate)2] (DPPMP= diphenylphosphinomethylpyridine) and [{Rh(COD)(μ2-benzoate)} 2], provided a significantly more active catalyst. Furthermore, the addition of a catalytic amount of base (Cs2CO3) had an additional accelerating effect. This higher catalyst activity allowed the reaction time to be reduced from 16 to 1-4 h while maintaining high selectivity. Studies on the substrate scope revealed that the new catalysts have greater functional-group compatibility.
Author supplied keywords
Cite
CITATION STYLE
Wei, S., Pedroni, J., Meißner, A., Lumbroso, A., Drexler, H. J., Heller, D., & Breit, B. (2013). Development of an improved rhodium catalyst for z-selective anti-markovnikov addition of carboxylic acids to terminal alkynes. Chemistry - A European Journal, 19(36), 12067–12076. https://doi.org/10.1002/chem.201300160
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.