Herein, we present an undirected para-selective two-step C–H alkylation of complex arenes useful for late-stage functionalization. The combination of a site-selective C–H thianthrenation with palladium-catalyzed reductive electrophile cross-coupling grants access to a diverse range of synthetically useful alkylated arenes which cannot be accessed otherwise with comparable selectivity, diversity, and practicality. The robustness of this transformation is further demonstrated by thianthrenium-based reductive coupling of two complex fragments
Two main challenges hinder the development of new, broadly useful C–H functionalization reactions: (...
Thianthrenation is a highly selective method to functionalize aromatic C-H-bonds. Electrophilic acti...
The elaboration of simple arenes in order to access more complex substitution patterns is a crucial ...
Direct C–H functionalization is one of the most straightforward yet challenging strategies to quickl...
Direct C–H functionalization can quickly increase useful structural and functional molecular complex...
The high abundance of C–H bonds in organic molecules makes C–H functionalization a powerful approach...
The introduction of thianthrene as a linchpin has proven to be a versatile strategy for the C–H func...
With the development of C-H activation reaction in recent several decades, late-stage functionalizat...
Catalytic systems for direct C−H activation of arenes commonly show preference for electronically ac...
A simple and highly chemo- and regioselective method for introducing primary alkyl substituents into...
Aromatic C–H functionalization, the exchange of hydrogen atoms which are bound to carbon atoms for f...
We report diverse C–N cross-coupling reactions of aryl thianthrenium salts that are formed site-sele...
Thioethers have been proven to be reliable directing groups for palladium catalyzed alkenylation of ...
ABSTRACT: Current approaches to achieve site selectivity in the C−H activation of arenes involve the...
The introduction of thianthrene as a linchpin has proven to be a versatile strategy for the C-H func...
Two main challenges hinder the development of new, broadly useful C–H functionalization reactions: (...
Thianthrenation is a highly selective method to functionalize aromatic C-H-bonds. Electrophilic acti...
The elaboration of simple arenes in order to access more complex substitution patterns is a crucial ...
Direct C–H functionalization is one of the most straightforward yet challenging strategies to quickl...
Direct C–H functionalization can quickly increase useful structural and functional molecular complex...
The high abundance of C–H bonds in organic molecules makes C–H functionalization a powerful approach...
The introduction of thianthrene as a linchpin has proven to be a versatile strategy for the C–H func...
With the development of C-H activation reaction in recent several decades, late-stage functionalizat...
Catalytic systems for direct C−H activation of arenes commonly show preference for electronically ac...
A simple and highly chemo- and regioselective method for introducing primary alkyl substituents into...
Aromatic C–H functionalization, the exchange of hydrogen atoms which are bound to carbon atoms for f...
We report diverse C–N cross-coupling reactions of aryl thianthrenium salts that are formed site-sele...
Thioethers have been proven to be reliable directing groups for palladium catalyzed alkenylation of ...
ABSTRACT: Current approaches to achieve site selectivity in the C−H activation of arenes involve the...
The introduction of thianthrene as a linchpin has proven to be a versatile strategy for the C-H func...
Two main challenges hinder the development of new, broadly useful C–H functionalization reactions: (...
Thianthrenation is a highly selective method to functionalize aromatic C-H-bonds. Electrophilic acti...
The elaboration of simple arenes in order to access more complex substitution patterns is a crucial ...