C–H arylation of arenes without the use of directing groups is a challenge, even for simple molecules, such as benzene. We describe spatial anion control as a concept for the design of catalytic sites for C–H bond activation, thereby enabling nondirected C–H arylation of arenes at ambient temperature. The mild conditions enable late-stage structural diversification of biologically relevant small molecules, and site-selectivity complementary to that obtained with other methods of arene functionalization can be achieved. These results reveal the potential of spatial anion control in transition-metal catalysis for the functionalization of C–H bonds under mild conditions
Current approaches to achieve site selectivity in the C–H activation of arenes involve the use of di...
Transition metal-free radical arylation of heteroarenes is achieved at room temperature by simply ad...
Despite the emergence of catalytic C(sp3 )−H arylation at the remote δ-position via challenging six-...
C–H activation of functionally rich molecules without the need for directing groups promises shorter...
Catalytic systems for direct C−H activation of arenes commonly show preference for electronically ac...
ABSTRACT: Current approaches to achieve site selectivity in the C−H activation of arenes involve the...
Bonds between hydrogen and carbon atoms are the most frequent type of bonds in organic molecules. Th...
Site-selectivity remains a major challenge in metal-catalyzed C–H bond functionalization. Most exist...
Metal-catalyzed cross-coupling reactions to form C-C bonds are a mainstay in the preparation of smal...
Over the past decades, organic chemists have focussed on developing new approaches to directed C–H f...
The biaryl core has been identified by medicinal chemists as a privileged structure in pharmaceutica...
The reactivity of the electron‐rich anionic AlI aluminyl compound K2[(NON)Al]2 (NON=4,5‐bis(2,6‐diis...
Metal-catalyzed cross-coupling reactions to form C-C bonds are a mainstay in the preparation of smal...
Novel synthetic applications of the Palladium/norbornene catalytic system are presented herein. Sele...
The overall goal of this project is the development of new catalytic strategies for the construction...
Current approaches to achieve site selectivity in the C–H activation of arenes involve the use of di...
Transition metal-free radical arylation of heteroarenes is achieved at room temperature by simply ad...
Despite the emergence of catalytic C(sp3 )−H arylation at the remote δ-position via challenging six-...
C–H activation of functionally rich molecules without the need for directing groups promises shorter...
Catalytic systems for direct C−H activation of arenes commonly show preference for electronically ac...
ABSTRACT: Current approaches to achieve site selectivity in the C−H activation of arenes involve the...
Bonds between hydrogen and carbon atoms are the most frequent type of bonds in organic molecules. Th...
Site-selectivity remains a major challenge in metal-catalyzed C–H bond functionalization. Most exist...
Metal-catalyzed cross-coupling reactions to form C-C bonds are a mainstay in the preparation of smal...
Over the past decades, organic chemists have focussed on developing new approaches to directed C–H f...
The biaryl core has been identified by medicinal chemists as a privileged structure in pharmaceutica...
The reactivity of the electron‐rich anionic AlI aluminyl compound K2[(NON)Al]2 (NON=4,5‐bis(2,6‐diis...
Metal-catalyzed cross-coupling reactions to form C-C bonds are a mainstay in the preparation of smal...
Novel synthetic applications of the Palladium/norbornene catalytic system are presented herein. Sele...
The overall goal of this project is the development of new catalytic strategies for the construction...
Current approaches to achieve site selectivity in the C–H activation of arenes involve the use of di...
Transition metal-free radical arylation of heteroarenes is achieved at room temperature by simply ad...
Despite the emergence of catalytic C(sp3 )−H arylation at the remote δ-position via challenging six-...