Herein, we demonstrate that the bench stable closo-hexaborate cluster anion can engage in a nucleophilic substitution reaction with a wide array of organic and main group electrophiles. The resulting molecules containing B‒C bonds can be further converted to tricoordinate boron species widely used in organic synthesis.<br
Boron cluster chemistry has seen large strides in progress during the 20th century, but little has b...
Exploration of new organometallic systems based on polyhedral boron clusters has the potential to so...
Boryl halide, carboxylate and sulfonate complexes of 1,3-bis(2,6- diisopropylphenyl)imidazol-2-ylide...
A cornerstone of modern synthetic chemistry rests on the ability to manipulate the reactivity of a c...
The aim of this bachelor thesis was to get used to with the basics of boron chemistry, especially th...
The tetraaryl μ‐hydridodiborane(4) anion [2H]− possesses nucleophilic B−B and B−H bonds. Treatment o...
Icosahedral boron clusters (e. g. C2B10H12, [CB11H12]1-, [B12H12]2-) are aromatic molecules that can...
Over the past several decades, metal-catalyzed cross-coupling has emerged as a very powerful strateg...
The beginnings of boron rich nanoclusters chemistry are in part due to the pioneering work of Alfred...
Boryl halide, carboxylate and sulfonate complexes of 1,3-bis(2,6-diisopropylphenyl)imidazol-2-yliden...
Organoboranes are some of the most synthetically valuable and widely used intermediates in organic a...
The particular nature of boron compounds allows an ample modularity of their properties ranging from...
Selective tuning of molecular properties such as solubility, melting point and crystallinity remains...
Boron mono- and di-cations featuring nucleophilic N-heterocyclic olefin (NHO) and pentamethylcyclope...
closo-Borate anions [closo-BnXn]2- are part of the most famous textbook examples of polyhedral compo...
Boron cluster chemistry has seen large strides in progress during the 20th century, but little has b...
Exploration of new organometallic systems based on polyhedral boron clusters has the potential to so...
Boryl halide, carboxylate and sulfonate complexes of 1,3-bis(2,6- diisopropylphenyl)imidazol-2-ylide...
A cornerstone of modern synthetic chemistry rests on the ability to manipulate the reactivity of a c...
The aim of this bachelor thesis was to get used to with the basics of boron chemistry, especially th...
The tetraaryl μ‐hydridodiborane(4) anion [2H]− possesses nucleophilic B−B and B−H bonds. Treatment o...
Icosahedral boron clusters (e. g. C2B10H12, [CB11H12]1-, [B12H12]2-) are aromatic molecules that can...
Over the past several decades, metal-catalyzed cross-coupling has emerged as a very powerful strateg...
The beginnings of boron rich nanoclusters chemistry are in part due to the pioneering work of Alfred...
Boryl halide, carboxylate and sulfonate complexes of 1,3-bis(2,6-diisopropylphenyl)imidazol-2-yliden...
Organoboranes are some of the most synthetically valuable and widely used intermediates in organic a...
The particular nature of boron compounds allows an ample modularity of their properties ranging from...
Selective tuning of molecular properties such as solubility, melting point and crystallinity remains...
Boron mono- and di-cations featuring nucleophilic N-heterocyclic olefin (NHO) and pentamethylcyclope...
closo-Borate anions [closo-BnXn]2- are part of the most famous textbook examples of polyhedral compo...
Boron cluster chemistry has seen large strides in progress during the 20th century, but little has b...
Exploration of new organometallic systems based on polyhedral boron clusters has the potential to so...
Boryl halide, carboxylate and sulfonate complexes of 1,3-bis(2,6- diisopropylphenyl)imidazol-2-ylide...