Brønsted Acid-Catalyzed Enantioselective Cycloisomerization of Arylalkynes

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Abstract

The first example of an enantioselective carbocyclization of an alkyne-containing substrate catalyzed by chiral Brønsted acids was achieved. The use of the 2-hydroxynaphthyl substituent on the alkyne as a directing group constituted the key parameter enabling both efficient regioselective protonation of the carbon–carbon triple bond and chiral induction. The key cationic intermediate could be depicted either as a cationic vinylidene ortho-quinone methide or a stabilized vinyl cation. Atropoisomeric phenanthrenes derivatives were produced in high yields and good enantioselectivities under mild, metal-free reaction conditions in the presence of chiral N-triflylphosphoramide catalysts. The carbenic nature of the cationic intermediate was also exploited to describe an example of alkyne/alkane cycloisomerization.

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Gicquiaud, J., Abadie, B., Dhara, K., Berlande, M., Hermange, P., Sotiropoulos, J. M., & Toullec, P. Y. (2020). Brønsted Acid-Catalyzed Enantioselective Cycloisomerization of Arylalkynes. Chemistry - A European Journal, 26(69), 16266–16271. https://doi.org/10.1002/chem.202003783

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