Spontaneous resolution of julia-kocienski intermediates facilitates phase separation to produce Z - And e -monofluoroalkenes

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Abstract

The monofluoroalkene motif is important in drug development as it serves as a peptide bond isostere and is found in a number of biologically active compounds with various pharmacological activities. Direct olefination of carbonyl compound is a straightforward way to prepare monofluoroalkenes; however, these methods often result in a mixture of Z- and E-isomers that cannot be easily separated. We discovered a unique spontaneous resolving reaction that simultaneously addresses the problems in the synthesis and separation of Z- and E-monofluoroalkenes. The reaction is accompanied by a highly efficient spontaneous kinetic resolution and phase labeling of monofluoroalkene precursors which allows the separation of Z- and E-monofluoroalkenes by liquid-liquid extraction. The application of the method is demonstrated by the synthesis and separation of potential anticancer agents, which are inseparable by HPLC.

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Zhao, Y., Jiang, F., & Hu, J. (2015). Spontaneous resolution of julia-kocienski intermediates facilitates phase separation to produce Z - And e -monofluoroalkenes. Journal of the American Chemical Society, 137(15), 5199–5203. https://doi.org/10.1021/jacs.5b02112

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