A Simple, Broad‐Scope Nickel(0) Precatalyst System for the Direct Amination of Allyl Alcohols

The preparation of allylic amines is traditionally accomplished by reactions of amines with reactive electrophiles, such as allylic halides, sulfonates, or oxyphosphonium species; such methods involve hazardous reagents, generate stoichiometric waste streams, and often suffer from side reactions (su...

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Veröffentlicht in:Angewandte Chemie International Edition 2018-08, Vol.57 (32), p.10202-10206
Hauptverfasser: Sweeney, Joseph B., Ball, Anthony K., Lawrence, Philippa A., Sinclair, Mackenzie C., Smith, Luke J.
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Sprache:eng
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Zusammenfassung:The preparation of allylic amines is traditionally accomplished by reactions of amines with reactive electrophiles, such as allylic halides, sulfonates, or oxyphosphonium species; such methods involve hazardous reagents, generate stoichiometric waste streams, and often suffer from side reactions (such as overalkylation). We report here the first broad‐scope nickel‐catalysed direct amination of allyl alcohols: An inexpensive NiII/Zn couple enables the allylation of primary, secondary, and electron‐deficient amines without the need for glove‐box techniques. Under mild conditions, primary and secondary aliphatic amines react smoothly with a range of allyl alcohols, giving secondary and tertiary amines efficiently. This “totally catalytic” method can also be applied to electron‐deficient nitrogen nucleophiles; the practicality of the process was demonstrated in an efficient, gram‐scale preparation of the calcium antagonist drug substance flunarizine (Sibelium®). Totally catalytic: An inexpensive nickel(II)/zinc couple enables the direct amination of allyl alcohols with primary, secondary, and electron‐deficient amines without the need for glove‐box techniques. A range of allyl alcohols were thus efficiently converted into secondary and tertiary amines under mild conditions.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.201805611