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Stacey L. McDonald

    Copper-Catalyzed Electrophilic Amination of sp2 and sp3 C−H Bonds
    Copper-Catalyzed Electrophilic Amination of sp2 and sp3 CH Bonds
    • The thesis presents advancements in the direct amination of C-H bonds through an innovative H-Zn exchange and electrophilic amination strategy. McDonald and colleagues demonstrate that this method is both rapid and effective, allowing for the efficient synthesis of a diverse range of functionalized amines.

      Copper-Catalyzed Electrophilic Amination of sp2 and sp3 CH Bonds
    • This thesis reports the latest developments in the direct amination of various C−H bonds using an H−Zn exchange/electrophilic amination strategy. McDonald and co-workers reveal this approach to be a rapid and powerful method for accessing a variety of functionalized amines. The material outlined in this book shows how McDonald achieved C−H zincation using strong, non-nucleophilic zinc bases and subsequent electrophilic amination of the corresponding zinc carbanions with copper as a catalyst and O-benzoylhydroxylamines as the electrophilic nitrogen source. McDonald’s findings are of relevance to medicinal chemistry, drug discovery and materials science. Her thesis is a source of inspiration for scientists entering the field and students beginning their PhD in a related area. 

      Copper-Catalyzed Electrophilic Amination of sp2 and sp3 C−H Bonds