A metal-free B(C<sub>6</sub>F<sub>5</sub>)<sub>3</sub>-catalyzed approach is developed for the disproportionation reaction of a series of indoles with various hydrosilanes, without any additives such as base and production of any small molecule such as dihydrogen. This boron catalyst system also exhibits excellent catalytic performance for practical application, such as catalyst loading as low as 0.01 mol % under solvent-free conditions, and a long-life catalytic performance highlighted by a constant catalytic activity being maintained and excellent yields being achieved for the desired products over 10 sequential additions of starting materials. On the basis of characterization of key intermediates through a series of in situ NMR reaction...
The cross-dehydrogenative coupling (CDC) reaction is an efficient strategy for indole synthesis. How...
A method for the functionalization of C-3β of vinyl indoles is described. The procedure involves a h...
International audienceWhereas iron catalysts usually promote catalyzed C3-alkylation of indole deriv...
Without the addition of any additives and production of any small molecules, C3-borylated indoles an...
It is a challenging task to achieve regioselective C–H silylation of indoles with Ph2SiH2, as bis(i...
none5noThe site selective synthesis of functionalized indoles is presented under environmentally con...
International audienceThe direct dearomative addition of arenes to the C3-position of unprotected in...
Automated, miniaturized and accelerated synthesis for efficient property optimization is a formidabl...
A tricatalytic telescoped synthesis toward C3-methyl-N-aryl indoline and indole products is reported...
The development of original strategies for the preparation of indole derivatives is a major goal in ...
140 Years ago Adolf von Baeyer proposed the structure of a heteroaromatic compound which revolution...
A mild and operationally simple Friedel–Crafts hydroxyalkylation of indoles with α-keto amides was d...
Direct coupling of indoles with C<sub>60</sub> has been achieved for the first time. Transition-meta...
Heteroarenes containing carbon-silicon (C-Si) bonds are important building blocks that play an impor...
The cross-dehydrogenative coupling (CDC) reaction is an efficient strategy for indole synthesis. How...
A method for the functionalization of C-3β of vinyl indoles is described. The procedure involves a h...
International audienceWhereas iron catalysts usually promote catalyzed C3-alkylation of indole deriv...
Without the addition of any additives and production of any small molecules, C3-borylated indoles an...
It is a challenging task to achieve regioselective C–H silylation of indoles with Ph2SiH2, as bis(i...
none5noThe site selective synthesis of functionalized indoles is presented under environmentally con...
International audienceThe direct dearomative addition of arenes to the C3-position of unprotected in...
Automated, miniaturized and accelerated synthesis for efficient property optimization is a formidabl...
A tricatalytic telescoped synthesis toward C3-methyl-N-aryl indoline and indole products is reported...
The development of original strategies for the preparation of indole derivatives is a major goal in ...
140 Years ago Adolf von Baeyer proposed the structure of a heteroaromatic compound which revolution...
A mild and operationally simple Friedel–Crafts hydroxyalkylation of indoles with α-keto amides was d...
Direct coupling of indoles with C<sub>60</sub> has been achieved for the first time. Transition-meta...
Heteroarenes containing carbon-silicon (C-Si) bonds are important building blocks that play an impor...
The cross-dehydrogenative coupling (CDC) reaction is an efficient strategy for indole synthesis. How...
A method for the functionalization of C-3β of vinyl indoles is described. The procedure involves a h...
International audienceWhereas iron catalysts usually promote catalyzed C3-alkylation of indole deriv...