Chemistry Heterocyclic Building Blocks Pyridines 2,3'-bipyridine
Ambeed provide 11 derivatives of 2,3'-bipyridine.
These compounds have the same murcko framework: 2,3'-bipyridine.
Metal Coordination: PPH2tPy is primarily used as a ligand in coordination chemistry. It can coordinate to metal ions through the nitrogen atoms on the pyridine rings. This leads to the formation of metal complexes.
Chelation: The three pyridine rings in PPH2tPy provide multiple sites for coordination, allowing it to form chelate complexes where the ligand wraps around the metal ion.
Substitution Reactions: The phenyl and pyridine rings in PPH2tPy can undergo various substitution reactions, depending on the conditions and reagents used.
Redox Reactions: PPH2tPy complexes can participate in redox reactions, where the metal center undergoes a change in oxidation state.
Catalysis: Some PPH2tPy-metal complexes can act as catalysts for a variety of chemical transformations.
Ligand Exchange: PPH2tPy can undergo ligand exchange reactions, where other ligands can replace one or more of the pyridine groups.
Cross-Coupling Reactions: PPH2tPy-containing complexes can participate in cross-coupling reactions, where two different organic fragments are joined together through a metal-mediated process.
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[2,3'-Bipyridine]-6'-carboxylic acid
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Methyl [2,3'-bipyridine]-6'-carboxylate
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(S)-N-((R)-1-(6'-Amino-[2,3'-bipyridin]-4'-yl)ethyl)-2-methylpropane-2-sulfinamide