Abstract
New catalytic reactions in which transition-metal cyclobutanolates undergo β-carbon elimination have been developed in our laboratory. Rhodium(I) cyclobutanolate generated by the addition of an arylrhodium(I) species to a cyclobutanone undergoes β-carbon elimination to cause ring opening of the four-membered carbocyclic framework. The synthetic potential of the ring-opening process through β-carbon elimination has been demonstrated by its application to a ring-expansion reaction forming a seven-membered ring. Furthermore, a formal alkyne insertion into the cyclobutanone framework is achieved by combining oxidative cyclization of a cyclobutanone and an alkyne on nickel(0) and β-carbon elimination from the resulting nickel(II) cyclobutanolate. © 2006 The Chemical Society of Japan.
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CITATION STYLE
Murakami, M., Makino, M., Ashida, S., & Matsuda, T. (2006). Construction of carbon frameworks through β-carbon elimination mediated by transition metals. Bulletin of the Chemical Society of Japan. https://doi.org/10.1246/bcsj.79.1315
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