Abstract
In this full article, detailed development of a catalytic decarbonylation of conjugated monoynones to synthesize disubstituted alkynes is described. The reaction scope and limitation has been thoroughly investigated, and a broad range of functional groups including heterocycles were compatible under the catalytic conditions. Mechanistic exploration via DFT calculations has also been executed. Through the computational study, a proposed catalytic mechanism has been carefully evaluated. These efforts are expected to serve as an important exploratory study for developing catalytic alkyne-transfer reactions via carbon-alkyne bond activation.
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CITATION STYLE
Dermenci, A., Whittaker, R. E., Gao, Y., Cruz, F. A., Yu, Z. X., & Dong, G. (2015). Rh-catalyzed decarbonylation of conjugated ynones via carbon-alkyne bond activation: Reaction scope and mechanistic exploration via DFT calculations. Chemical Science, 6(5), 3201–3210. https://doi.org/10.1039/c5sc00584a
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