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Metal-free alkene oxy- and amino-perfluoroalkylations via carbocation formation by using perfluoro acid anhydrides: unique reactivity between styrenes and perfluoro diacyl peroxides.


ABSTRACT: We present a strategy for metal-free, alkene difunctionalization-type, oxy- and amino-perfluoroalkylations, using perfluoro acid anhydrides as practical and user-friendly perfluoroalkyl sources. This method provides efficient access to oxy-perfluoroalkylation products via carbocation formation due to the unique reactivity between styrenes and bis(perfluoroacyl) peroxides generated in situ from perfluoro acid anhydrides. This reaction is also applicable to metal-free intramolecular amino-perfluoroalkylation of styrenes bearing a pendant amino group. Synthetic utility of the oxy-trifluoromethylation products was confirmed by demonstrating derivatization via hydrolysis, elimination, and acid-catalyzed substitution with carbon nucleophiles. The mechanism of the carbocation formation was investigated experimentally and theoretically.

SUBMITTER: Valverde E 

PROVIDER: S-EPMC6137437 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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Metal-free alkene oxy- and amino-perfluoroalkylations <i>via</i> carbocation formation by using perfluoro acid anhydrides: unique reactivity between styrenes and perfluoro diacyl peroxides.

Valverde Elena E   Kawamura Shintaro S   Sekine Daisuke D   Sodeoka Mikiko M  

Chemical science 20180801 35


We present a strategy for metal-free, alkene difunctionalization-type, oxy- and amino-perfluoroalkylations, using perfluoro acid anhydrides as practical and user-friendly perfluoroalkyl sources. This method provides efficient access to oxy-perfluoroalkylation products <i>via</i> carbocation formation due to the unique reactivity between styrenes and bis(perfluoroacyl) peroxides generated <i>in situ</i> from perfluoro acid anhydrides. This reaction is also applicable to metal-free intramolecular  ...[more]

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