Practical Singly and Doubly Electrophilic Aminating Agents: A New, More Sustainable Platform for Carbon–Nitrogen Bond Formation

Given the importance of amines in a large number of biologically active natural products, active pharmaceutical ingredients, agro­chemicals, and functional materials, the development of efficient C–N bond-forming methods with wide substrate scope continues to be at the frontier of research in synthe...

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Veröffentlicht in:Journal of the American Chemical Society 2017-08, Vol.139 (32), p.11184-11196
Hauptverfasser: Kattamuri, Padmanabha V, Yin, Jun, Siriwongsup, Surached, Kwon, Doo-Hyun, Ess, Daniel H, Li, Qun, Li, Guigen, Yousufuddin, Muhammed, Richardson, Paul F, Sutton, Scott C, Kürti, László
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Sprache:eng
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Zusammenfassung:Given the importance of amines in a large number of biologically active natural products, active pharmaceutical ingredients, agro­chemicals, and functional materials, the development of efficient C–N bond-forming methods with wide substrate scope continues to be at the frontier of research in synthetic organic chemistry. Here, we present a general and fundamentally new synthetic approach for the direct, transition-metal-free preparation of symmetrical and unsymmetrical diaryl-, aryl­alkyl-, and dialkyl­amines that relies on the facile single or double addition of readily available C-nucleo­philes to the nitrogen atom of bench-stable electro­philic aminating agents. Practical single and double polarity reversal (i.e., umpolung) of the nitrogen atom is achieved using sterically and electronically tunable keto­malonate-derived imines and oximes. Overall, this novel approach represents an operationally simple, scalable, and environmentally friendly alternative to transition-metal-catalyzed C–N cross-coupling methods that are currently used to access structurally diverse secondary amines.
ISSN:0002-7863
1520-5126
1520-5126
DOI:10.1021/jacs.7b05279