Graphitic Carbon Nitride as a Metal‐Free Heterogeneous Semiconductor Photocatalyst for Fluoroalkylation Reactions

Author:

Wang Hao12,Xie Fukai2,Wang He1,Dai Wen2ORCID

Affiliation:

1. School of Petrochemical Engineering Liaoning Petrochemical University Fushun 113001 China

2. Dalian Institute of Chemical Physics (DICP) Chinese Academy of Sciences Dalian 116023 China

Abstract

AbstractThe increasing use of fluorine‐containing bioactive molecules necessitates efficient strategies for fluorinated group installation. Despite the impressive development of photoinduced radical fluoroalkylation as a powerful tool for introducing fluorine, the persistent issues, including the recyclability and reaction specificity of homogeneous photocatalysts, still leave great room for further advancement in a sustainable and general fashion. Herein, we report a conceptually different approach toward multiple types of fluoroalkylations by using recoverable and versatile graphitic carbon nitride (g‐CN) nanosheets as a heterogeneous photocatalyst. This photocatalytic system enables diverse intermolecular fluoroalkylations of alkenes with fluoroalkanesulfinates and intramolecular fluoroalkyl migrations of alkenyl triflates. Detailed characterizations and mechanism studies substantiate the stability of this organic semiconductor and the crucial role of photogenerated electron‐hole pairs.

Publisher

Wiley

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