Hydroamination reactions by metal triflates: Brønsted acid vs. metal catalysis?
Jason G. Taylor, Luis A. Adrio, King Kuok Hii
Abstract
Jason G. Taylor, Luis A. Adrio, King Kuok Hii
Abstract
Catalytic hydroamination reactions involving the addition of carboxamides (X = CO), carbamates (X = CO(2)) and sulfonamides (X = SO(2)) to unactivated C=C bonds are briefly reviewed. Development in this field of catalytic research is briefly charted, followed by a discussion of possible mechanisms, including arguments to support the operation of both metal and Brønsted acid catalysis in these systems. Future developments in the area are summarised.
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Catalytic hydroamination reactions involving the addition of carboxamides (X = CO), carbamates (X = CO(2)) and sulfonamides (X = SO(2)) to unactivated C=C bonds are briefly reviewed. Development in this field of catalytic research is briefly charted, followed by a discussion of possible mechanisms, including arguments to support the operation of both metal and Brønsted acid catalysis in these systems. Future developments in the area are summarised.
Key concepts: Hydroamination, Catalysis, Brønsted–Lowry acid–base theory, Metal, Chemistry, Combinatorial chemistry, Organic chemistry