The quest for selective C–H functionalization reactions, able to provide new strategic opportunities for the rapid assembly of molecular complexity, represents a major focus of the chemical community. Examples of non-directed, remote Csp3–H activation to forge complex carbon frameworks remain scarce due to the kinetic stability and thus intrinsic challenge associated to the chemo-, regio- and stereoselective functionalization of aliphatic C–H bonds. Here we describe a radical-mediated, directing-group-free regioselective 1,5-hydrogen transfer of unactivated Csp3–H bonds followed by a second Csp2–H functionalization to produce, with exquisite stereoselectivity, a variety of elaborated fused ketones. This study demonstrates that aliphatic aci...
Bonds between hydrogen and carbon atoms are the most frequent type of bonds in organic molecules. Th...
Reactions for the controlled, catalytic formation of carbon-carbon bonds are crucial for modern orga...
We report a simple one-pot protocol that affords functionalization of N-CH3 groups in N-methyl-N,N-d...
The quest for selective C–H functionalization reactions, able to provide new strategic opportunities...
The direct and enantioselective functionalization of inert bonds such as carbon–hydrogen and carbon–...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...
The selective transformation of carbon-carbon and carbon-hydrogen bonds represents an attractive app...
I. Strategies for Intermolecular Functionalization of Unactivated Aliphatic C–H Bonds Aliphati...
The site-selective transformation of unactivated, aliphatic C–H bonds is a challenging goal to achie...
The direct functionalization of non-activated C–H bonds, especially in an enantioselective manner, r...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
Privileged strategies for direct transformations of inert aliphatic C–H bonds Guihua Chen and Zhang-...
The most ubiquitous bond in pharmaceuticals rests between carbon and hydrogen and until recently, ...
none1noThe development of enabling synthetic methodologies for the chemical manipulation of unfuncti...
International audienceModern organic synthesis focuses on the discovery and the development of stere...
Bonds between hydrogen and carbon atoms are the most frequent type of bonds in organic molecules. Th...
Reactions for the controlled, catalytic formation of carbon-carbon bonds are crucial for modern orga...
We report a simple one-pot protocol that affords functionalization of N-CH3 groups in N-methyl-N,N-d...
The quest for selective C–H functionalization reactions, able to provide new strategic opportunities...
The direct and enantioselective functionalization of inert bonds such as carbon–hydrogen and carbon–...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...
The selective transformation of carbon-carbon and carbon-hydrogen bonds represents an attractive app...
I. Strategies for Intermolecular Functionalization of Unactivated Aliphatic C–H Bonds Aliphati...
The site-selective transformation of unactivated, aliphatic C–H bonds is a challenging goal to achie...
The direct functionalization of non-activated C–H bonds, especially in an enantioselective manner, r...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
Privileged strategies for direct transformations of inert aliphatic C–H bonds Guihua Chen and Zhang-...
The most ubiquitous bond in pharmaceuticals rests between carbon and hydrogen and until recently, ...
none1noThe development of enabling synthetic methodologies for the chemical manipulation of unfuncti...
International audienceModern organic synthesis focuses on the discovery and the development of stere...
Bonds between hydrogen and carbon atoms are the most frequent type of bonds in organic molecules. Th...
Reactions for the controlled, catalytic formation of carbon-carbon bonds are crucial for modern orga...
We report a simple one-pot protocol that affords functionalization of N-CH3 groups in N-methyl-N,N-d...