Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Highly enantioselective catalytic synthesis of chiral pyridines

View through CrossRef
AbstractGeneral methods to prepare chiral pyridine derivatives are greatly sought after due to their significance in medicinal chemistry. Here, we report highly enantioselective catalytic transformations of poorly reactive β-substituted alkenyl pyridines to access a wide range of alkylated chiral pyridines. The simple methodology involves reactivity enhancement via Lewis acid (LA) activation, the use of readily available and highly reactive Grignard reagents, and a copper-chiral diphosphine ligand catalyst. Apart from allowing the introduction of different linear, branched, cyclic, and functionalised alkyl chains at the β-position of alkenyl pyridines, the catalytic system also shows high functional group tolerance.
Title: Highly enantioselective catalytic synthesis of chiral pyridines
Description:
AbstractGeneral methods to prepare chiral pyridine derivatives are greatly sought after due to their significance in medicinal chemistry.
Here, we report highly enantioselective catalytic transformations of poorly reactive β-substituted alkenyl pyridines to access a wide range of alkylated chiral pyridines.
The simple methodology involves reactivity enhancement via Lewis acid (LA) activation, the use of readily available and highly reactive Grignard reagents, and a copper-chiral diphosphine ligand catalyst.
Apart from allowing the introduction of different linear, branched, cyclic, and functionalised alkyl chains at the β-position of alkenyl pyridines, the catalytic system also shows high functional group tolerance.

Related Results

Iridium Catalyzed Enantioselective C3 Allenylation of Pyridines
Iridium Catalyzed Enantioselective C3 Allenylation of Pyridines
An enantioselective C3-allenylation of pyridines has been developed through the intermediacy of oxazino pyridines. This dearomatization/electrophilic substitution/rearomatization s...
Advances on broadband and resonant chiral metasurfaces
Advances on broadband and resonant chiral metasurfaces
Abstract Chirality describes mirror symmetry breaking in geometric structures or certain physical quantities. The interaction between chiral structure and chiral ...
Design, synthesis and evaluation in enantioselective catalysis of diverse adjustable axially chiral biphenyl ligands and catalysts
Design, synthesis and evaluation in enantioselective catalysis of diverse adjustable axially chiral biphenyl ligands and catalysts
Chiral compounds widely occur in biomolecules, natural products and drugs, and acquisition of chirality in the chiral molecules highly depends on chiral inducers including chiral l...
Dual Catalysis
Dual Catalysis
Dual catalysis is a powerful strategy for developing new organic reactions that used to be challenging to achieve by traditional methods. Whether through relay catalysis or synergi...
The Role of Asymmetric Synthesis in Drug Discovery
The Role of Asymmetric Synthesis in Drug Discovery
The Role of Asymmetric Synthesis in Drug Discovery presents a comprehensive overview of how enantioselective synthesis drives the development of safer, more effective therapeutics....
Artificial Chiral Probes and Bioapplications
Artificial Chiral Probes and Bioapplications
AbstractThe development of artificial chiral architectures, especially chiral inorganic nanostructures, has greatly promoted research into chirality in nanoscience. The nanoscale c...
Chiral covalent organic cages: Construction and chiral functions
Chiral covalent organic cages: Construction and chiral functions
AbstractCovalent organic cages (COCs) are three‐dimensional organic molecules with permanent cavities, known for their ordered pore structures, excellent processability, and modula...
Modular Enantioselective Photocatalysts from Privileged Pybox Scaffolds
Modular Enantioselective Photocatalysts from Privileged Pybox Scaffolds
Modern organic synthesis relies upon the availability of chiral catalysts to control the stereochemistry of bond-forming reactions. As the field of enantioselective catalysis has m...

Back to Top