H2O ⋅ B(C6F5)3‐Catalyzed para‐Alkylation of Anilines with Alkenes Applied to Late‐Stage Functionalization of Non‐Steroidal Anti‐Inflammatory Drugs

Author:

Winfrey Laura1,Yun Lei1,Passeri Ginevra1,Suntharalingam Kogularamanan1ORCID,Pulis Alexander P.1ORCID

Affiliation:

1. School of Chemistry University of Leicester Leicester LE1 7RH United Kingdom

Abstract

AbstractAnilines are core motifs in a variety of important molecules including medicines, materials and agrochemicals. We report a straightforward procedure that allows access to new chemical space of anilines via their para‐C−H alkylation. The method utilizes commercially available catalytic H2O ⋅ B(C6F5)3 and is highly selective for paraC‐alkylation (over N‐alkylation and orthoC‐alkylation) of anilines, with a wide scope in both the aniline substrates and alkene coupling partners. Readily available alkenes are used, and include new classes of alkene for the first time. The mild reaction conditions have allowed the procedure to be applied to the late‐stage‐functionalization of non‐steroidal anti‐inflammatory drugs (NSAIDs), including fenamic acids and diclofenac. The formed novel NSAID derivatives display improved anti‐inflammatory properties over the parent NSAID structure.

Funder

Royal Society

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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