This protocol describes a method for the direct silylation of the carbon–hydrogen (C–H) bond of aromatic heterocycles using inexpensive and abundant potassium tert-butoxide (KOt-Bu) as the catalyst. This catalytic cross-dehydrogenative coupling of simple hydrosilanes and various electron-rich aromatic heterocycles enables the synthesis of valuable silylated heteroarenes. The products thus obtained can be used as versatile intermediates, which facilitate the divergent synthesis of pharmaceutically relevant compound libraries from a single Si-containing building block. Moreover, a variety of complex Si-containing motifs, such as those produced by this protocol, are being actively investigated as next-generation therapeutic agents, because the...
Silylation of primary and secondary amines is reported, using triethylsilane as the silylating reage...
We report a new system for the silylation of aryl C–H bonds. The combination of [Ir(cod)(OMe)]2 an...
Disclosed is a mild, scalable, and chemoselective catalytic cross-dehydrogenative C–H bond functiona...
This protocol describes a method for the direct silylation of the carbon–hydrogen (C–H) bond of arom...
Exploiting C-H bond activation is difficult, although some success has been achieved using precious ...
Compounds containing carbon-silicon (C-Si) bonds are of great interest in numerous fields, including...
Exploiting C–H bond activation is difficult, although some success has been achieved using precious ...
We report a new system for the silylation of aryl C-H bonds. The combination of [Ir(cod)(OMe)]2 and ...
The following dissertation discusses the development of catalytic silylation reactions of alkenyl, a...
The following dissertation discusses the development of catalytic silylation reactions of alkenyl, a...
Exploiting C–H bond activation is difficult, although some success has been achieved using precious ...
The following dissertation discusses the development of silylations of C–H bonds that occur with hig...
The following dissertation discusses the development of silylations of C–H bonds that occur with hig...
In this chapter, homogeneous iridium-catalyzed silylation reactions are reviewed, focusing primarily...
We report a new system for the silylation of aryl C-H bonds. The combination of [Ir(cod)(OMe)]2 and ...
Silylation of primary and secondary amines is reported, using triethylsilane as the silylating reage...
We report a new system for the silylation of aryl C–H bonds. The combination of [Ir(cod)(OMe)]2 an...
Disclosed is a mild, scalable, and chemoselective catalytic cross-dehydrogenative C–H bond functiona...
This protocol describes a method for the direct silylation of the carbon–hydrogen (C–H) bond of arom...
Exploiting C-H bond activation is difficult, although some success has been achieved using precious ...
Compounds containing carbon-silicon (C-Si) bonds are of great interest in numerous fields, including...
Exploiting C–H bond activation is difficult, although some success has been achieved using precious ...
We report a new system for the silylation of aryl C-H bonds. The combination of [Ir(cod)(OMe)]2 and ...
The following dissertation discusses the development of catalytic silylation reactions of alkenyl, a...
The following dissertation discusses the development of catalytic silylation reactions of alkenyl, a...
Exploiting C–H bond activation is difficult, although some success has been achieved using precious ...
The following dissertation discusses the development of silylations of C–H bonds that occur with hig...
The following dissertation discusses the development of silylations of C–H bonds that occur with hig...
In this chapter, homogeneous iridium-catalyzed silylation reactions are reviewed, focusing primarily...
We report a new system for the silylation of aryl C-H bonds. The combination of [Ir(cod)(OMe)]2 and ...
Silylation of primary and secondary amines is reported, using triethylsilane as the silylating reage...
We report a new system for the silylation of aryl C–H bonds. The combination of [Ir(cod)(OMe)]2 an...
Disclosed is a mild, scalable, and chemoselective catalytic cross-dehydrogenative C–H bond functiona...