Anomeric Amide Enabled Divergent Synthesis of Unsymmetrical Ureas, Carbamates, Thioesters, and Amides From Aldehydes

J Jasper L. Tyler M Meiyi Zeng (Organisch‐Chemisches Institut Universität Münster Münster Germany) J Julius Wiener (Organisch‐Chemisches Institut Universität Münster Münster Germany) M Marie‐Christin Leusmann (Organisch‐Chemisches Institut Universität Münster Münster Germany) C Colin Stein (Organisch-Chemisches Institut, Universität Münster) C Constantin G. Daniliuc F Frank Glorius (Organisch-Chemisches Institut, Universität Münster)

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

Volume / Issue Vol. 1, Issue 1
Published July 08, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

J

Jasper L. Tyler

M

Meiyi Zeng

Organisch‐Chemisches Institut Universität Münster Münster Germany

J

Julius Wiener

Organisch‐Chemisches Institut Universität Münster Münster Germany

M

Marie‐Christin Leusmann

Organisch‐Chemisches Institut Universität Münster Münster Germany

C

Colin Stein

Organisch-Chemisches Institut, Universität Münster

C

Constantin G. Daniliuc

F

Frank Glorius

Organisch-Chemisches Institut, Universität Münster