Boryl ligands hold promise in catalysis due to their very high electron-donating property. In this communication double N,B-type boryl anions were designed as bidentate ligands to promote an sp<sup>2</sup> C–H borylation reaction. A symmetric pyridine-containing tetraaminodiborane(4) compound (<b>1</b>) was readily prepared as the ligand precursor that could be used, in combination with [Ir(OMe)(COD)]<sub>2</sub>, to <i>in situ</i> generate a highly active catalyst for a broad range of (hetero)arene substrates including highly electron-rich and/or sterically hindered ones. This work provides the first example of a bidentate boryl ligand in supporting homogeneous organometallic catalysis
The hemilabile character of 2-pyridyl carbaldehyde hydrazones as N,N bidentate ligands is key to per...
Heterobimetallic Cu–Fe and Zn–Fe complexes catalyze C–H borylation, a transformation that previously...
Compounds with carbon–boron bonds are versatile intermediates for building more complex molecules vi...
Boryl ligands hold promise in catalysis due to their very high electron-donating property. In this c...
Convenient silylborane precursors for introducing N,B-bidentate boryl ligands onto transition metals...
The preformed catalyst [Ir(Cl)(COD)(1,10-phenanthroline)] (<b>2</b>; COD = cyclooctadiene) was fo...
The preformed catalyst [Ir(Cl)(COD)(1,10-phenanthroline)] (<b>2</b>; COD = cyclooctadiene) was fo...
We report herein the iridium-catalyzed meta-selective C–H borylation of benzamides by using a newly ...
The iridium-catalysed C-H borylation is a valuable and attractive method for the preparation of aryl...
A study on the iridium-catalyzed C–H borylation of heteroarenes is reported. Several heteroarenes co...
The catalytic, undirected borylation of alkyl C–H bonds typically occurs at high reaction temperatur...
A mechanistic study on the origin of the difference in reactivity between Ir catalysts for C-H boryl...
Transition metal catalysed C-H activation is a highly desirable strategy for the functionalization o...
Primary benzylic boronate esters are useful intermediates in organic synthesis, but these reagents c...
Primary benzylic boronate esters are useful intermediates in organic synthesis, but these reagents c...
The hemilabile character of 2-pyridyl carbaldehyde hydrazones as N,N bidentate ligands is key to per...
Heterobimetallic Cu–Fe and Zn–Fe complexes catalyze C–H borylation, a transformation that previously...
Compounds with carbon–boron bonds are versatile intermediates for building more complex molecules vi...
Boryl ligands hold promise in catalysis due to their very high electron-donating property. In this c...
Convenient silylborane precursors for introducing N,B-bidentate boryl ligands onto transition metals...
The preformed catalyst [Ir(Cl)(COD)(1,10-phenanthroline)] (<b>2</b>; COD = cyclooctadiene) was fo...
The preformed catalyst [Ir(Cl)(COD)(1,10-phenanthroline)] (<b>2</b>; COD = cyclooctadiene) was fo...
We report herein the iridium-catalyzed meta-selective C–H borylation of benzamides by using a newly ...
The iridium-catalysed C-H borylation is a valuable and attractive method for the preparation of aryl...
A study on the iridium-catalyzed C–H borylation of heteroarenes is reported. Several heteroarenes co...
The catalytic, undirected borylation of alkyl C–H bonds typically occurs at high reaction temperatur...
A mechanistic study on the origin of the difference in reactivity between Ir catalysts for C-H boryl...
Transition metal catalysed C-H activation is a highly desirable strategy for the functionalization o...
Primary benzylic boronate esters are useful intermediates in organic synthesis, but these reagents c...
Primary benzylic boronate esters are useful intermediates in organic synthesis, but these reagents c...
The hemilabile character of 2-pyridyl carbaldehyde hydrazones as N,N bidentate ligands is key to per...
Heterobimetallic Cu–Fe and Zn–Fe complexes catalyze C–H borylation, a transformation that previously...
Compounds with carbon–boron bonds are versatile intermediates for building more complex molecules vi...