The site-selective functionalization of an indole template offers exciting possibilities for the derivatization of molecules with useful biological properties. Herein, we report the remote C6-selective C–H alkylation of indole derivatives enabled by dual cyclometalation/redox ruthenium catalysis. Remote alkylation was achieved using <i>N</i>-pyrimidinyl indoles with an ancillary ester directing group at the C3 position. This ancillary directing group proved pivotal to reactivity at C6, with yields up to 92% achieved. A one-pot procedure to install this directing group followed by remote C6 functionalization has also been reported; both processes are shown to proceed via ruthenium redox catalysis. Computationally calculated Fukui indices elu...
Cationic ruthenium(II) complexes enabled oxidative C–H bond functionalizations with anilines bearing...
ABSTRACT: A ruthenium-catalyzed C2-hydroindolation of alkynes has been achieved. This protocol provi...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
A highly regioselective functionalization of indole at the C-4 position by employing an aldehyde fun...
A new approach to C-2 arylated indoles has been developed by utilizing a ruthenium-catalyzed, hetero...
A new approach to C-2 arylated indoles has been developed by utilizing a ruthenium-catalyzed, hetero...
An iridium-catalyzed direct C-7 selective C–H alkynylation of indolines at room temperature, for the...
A new approach to C-2 arylated indoles has been developed by utilizing a ruthenium-catalyzed, hetero...
A ruthenium-catalyzed C–H allylation of indoles with allyl alcohols via β-hydroxide elimination is r...
The first Ru-catalyzed redox-neutral C–H activation reaction via N–N bond cleavage is reported. Pyra...
An efficient ruthenium-catalyzed oxidative coupling of indoles and pyrroles with various alkenes at ...
A highly regioselective functionalization of indole at the C-4 position by employing an aldehyde fun...
A highly regioselective functionalization of indole at the C-4 position by employing an aldehyde fun...
Cationic ruthenium(II) complexes enabled oxidative C–H bond functionalizations with anilines bearing...
ABSTRACT: A ruthenium-catalyzed C2-hydroindolation of alkynes has been achieved. This protocol provi...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
A highly regioselective functionalization of indole at the C-4 position by employing an aldehyde fun...
A new approach to C-2 arylated indoles has been developed by utilizing a ruthenium-catalyzed, hetero...
A new approach to C-2 arylated indoles has been developed by utilizing a ruthenium-catalyzed, hetero...
An iridium-catalyzed direct C-7 selective C–H alkynylation of indolines at room temperature, for the...
A new approach to C-2 arylated indoles has been developed by utilizing a ruthenium-catalyzed, hetero...
A ruthenium-catalyzed C–H allylation of indoles with allyl alcohols via β-hydroxide elimination is r...
The first Ru-catalyzed redox-neutral C–H activation reaction via N–N bond cleavage is reported. Pyra...
An efficient ruthenium-catalyzed oxidative coupling of indoles and pyrroles with various alkenes at ...
A highly regioselective functionalization of indole at the C-4 position by employing an aldehyde fun...
A highly regioselective functionalization of indole at the C-4 position by employing an aldehyde fun...
Cationic ruthenium(II) complexes enabled oxidative C–H bond functionalizations with anilines bearing...
ABSTRACT: A ruthenium-catalyzed C2-hydroindolation of alkynes has been achieved. This protocol provi...
Transition metal-catalyzed selective CH, CC and CN bond activation reactions represent a challenging...