TY - JOUR
T1 - A Formal γ-C-H Functionalization of Carboxylic Acids Guided by Metal-Nitrenoids as an Unprecedented Mechanistic Motif
AU - Pradhan, Sourav
AU - Kweon, Jeonguk
AU - Sahoo, Manoj Kumar
AU - Jung, Hoimin
AU - Heo, Joon
AU - Kim, Yeong Bum
AU - Kim, Dongwook
AU - Park, Jung Woo
AU - Chang, Sukbok
N1 - Publisher Copyright:
© 2023 American Chemical Society.
PY - 2023/12/27
Y1 - 2023/12/27
N2 - Harnessing the key intermediates in metal-catalyzed reactions is one of the most essential strategies in the development of selective organic transformations. The nitrogen group transfer reactivity of metal-nitrenoids to ubiquitous C-H bonds allows for diverse C-N bond formation to furnish synthetically valuable aminated products. In this study, we present an unprecedented reactivity of iridium and ruthenium nitrenoids to generate remote carbocation intermediates, which subsequently undergo nucleophile incorporation, thus developing a formal γ-C-H functionalization of carboxylic acids. Mechanistic investigations elucidated a unique singlet metal-nitrenoid reactivity to initiate an abstraction of γ-hydride to form the carbocation intermediate that eventually reacts with a broad range of carbon, nitrogen, and oxygen nucleophiles, as well as biorelevant molecules. Alternatively, the same intermediate can lead to deprotonation to afford β,γ-unsaturated amides in a less nucleophilic solvent.
AB - Harnessing the key intermediates in metal-catalyzed reactions is one of the most essential strategies in the development of selective organic transformations. The nitrogen group transfer reactivity of metal-nitrenoids to ubiquitous C-H bonds allows for diverse C-N bond formation to furnish synthetically valuable aminated products. In this study, we present an unprecedented reactivity of iridium and ruthenium nitrenoids to generate remote carbocation intermediates, which subsequently undergo nucleophile incorporation, thus developing a formal γ-C-H functionalization of carboxylic acids. Mechanistic investigations elucidated a unique singlet metal-nitrenoid reactivity to initiate an abstraction of γ-hydride to form the carbocation intermediate that eventually reacts with a broad range of carbon, nitrogen, and oxygen nucleophiles, as well as biorelevant molecules. Alternatively, the same intermediate can lead to deprotonation to afford β,γ-unsaturated amides in a less nucleophilic solvent.
UR - https://www.scopus.com/pages/publications/85181023489
U2 - 10.1021/jacs.3c11628
DO - 10.1021/jacs.3c11628
M3 - Article
C2 - 38100053
AN - SCOPUS:85181023489
SN - 0002-7863
VL - 145
SP - 28251
EP - 28263
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 51
ER -