Cyclopropanation/Carboboration Reactions of Enynes with B(C6F5)3

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Abstract

Stoichiometric reaction of B(C6F5)3 with 1,6-enynes is shown to proceed via initial cyclopropanation and formal 1,1-carboboration. Depending on the substitution on the alkene moiety, subsequent ring-opening of the cyclopropane affords either cyclopentane or cyclohexane derivatives in which the C6F5 and B(C6F5)2 adopt a 1,4-positioning. Mechanistically, this transformation involves π-activation of the alkyne moiety, which triggers cyclopropanation, followed by carboboration. Both the cyclopropanation and subsequent ring-opening are shown to be stereospecific. Both cyclopropanation and 1,4-carboborated products were employed as Lewis acid components in frustrated Lewis pair activation of H2 and CO2.

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Hansmann, M. M., Melen, R. L., Rudolph, M., Rominger, F., Wadepohl, H., Stephan, D. W., & Hashmi, A. S. K. (2015). Cyclopropanation/Carboboration Reactions of Enynes with B(C6F5)3. Journal of the American Chemical Society, 137(49), 15469–15477. https://doi.org/10.1021/jacs.5b09311

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