Anomeric Amide Enabled Divergent Synthesis of Unsymmetrical Ureas, Carbamates, Thioesters, and Amides From Aldehydes
Abstract
ABSTRACT Divergent synthetic transformations that convert a single precursor into a range of structurally distinct products are powerful tools for rapidly exploring chemical space. Although numerous strategies exist for converting versatile functional handles such as halides and boronic acids into a multitude of reactive intermediates, there remains a pressing need for methodologies that exploit alternative linchpin fragments to open complementary avenues to molecular complexity. Herein, we report a divergent, anomeric amide‐enabled, aldehyde functionalization strategy, allowing access to unsymmetrical ureas, carbamates, thiocarbamates, thioesters, amines, or amides, all in a one‐pot procedure. Unique to this transformation is the formation of N ‐Boc‐hydroxamate intermediates, which serve as privileged platforms for orthogonal activation via Lossen‐type rearrangements, single‐electron transfer, or nucleophilic substitution, generating a diverse selection of reactive intermediates. Overall, this work establishes N ‐halo‐ O ‐activated hydroxycarbamate‐type anomeric amides as valuable reagents for aldehyde diversification, offering a complementary approach to molecular complexity generation from feedstock compounds.
Article Details
Authors (7)
Jasper L. Tyler
Meiyi Zeng
Organisch‐Chemisches Institut Universität Münster Münster Germany
Julius Wiener
Organisch‐Chemisches Institut Universität Münster Münster Germany
Marie‐Christin Leusmann
Organisch‐Chemisches Institut Universität Münster Münster Germany
Colin Stein
Organisch-Chemisches Institut, Universität Münster
Constantin G. Daniliuc
Frank Glorius
Organisch-Chemisches Institut, Universität Münster