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Electrophilicity Scale of Activated Amides: 17O NMR and 15N NMR Chemical Shifts of Acyclic Twisted Amides in N−C(O) Cross-Coupling
Authors:Dr. Laura Ielo  Prof. Dr. Vittorio Pace  Prof. Dr. Wolfgang Holzer  Md. Mahbubur Rahman  Dr. Guangrong Meng  Dr. Roman Szostak  Prof. Dr. Michal Szostak
Affiliation:1. Department of Pharmaceutical Chemistry, Faculty of Life Sciences, University of Vienna, Althanstrasse 14, Vienna, 1090 Austria;2. Department of Chemistry, Rutgers University, 73 Warren Street, Newark, NJ, 07102 United States

These authors contributed equally to this work.;3. Department of Chemistry, Wroclaw University, F. Joliot-Curie 14, Wroclaw, 50383 Poland;4. Department of Chemistry, Rutgers University, 73 Warren Street, Newark, NJ, 07102 United States

Abstract:The structure and properties of amides are of tremendous interest in organic synthesis and biochemistry. Traditional amides are planar and the carbonyl group non-electrophilic due to nN→π*C=O conjugation. In this study, we report electrophilicity scale by exploiting 17O NMR and 15N NMR chemical shifts of acyclic twisted and destabilized acyclic amides that have recently received major attention as precursors in N-C(O) cross-coupling by selective oxidative addition as well as precursors in electrophilic activation of N-C(O) bonds. Most crucially, we demonstrate that acyclic twisted amides feature electrophilicity of the carbonyl group that ranges between that of acid anhydrides and acid chlorides. Furthermore, a wide range of electrophilic amides is possible with gradually varying carbonyl electrophilicity by steric and electronic tuning of amide bond properties. Overall, the study quantifies for the first time that steric and electronic destabilization of the amide bond in common acyclic amides renders the amide bond as electrophilic as acid anhydrides and chlorides. These findings should have major implications on the fundamental properties of amide bonds.
Keywords:17O NMR spectroscopy  cross-coupling  N-C(O) activation  transition-metal catalysis  twisted amides
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