Home Chemistry Heterocyclic Building Blocks Pyridines Pyridine-2,6-Dicarboxylic Acid
Esterification: The carboxylic acid groups can undergo esterification reactions with alcohols in the presence of acid catalysts to form esters.
Metal Complexation: The nitrogen atom in the pyridine ring can coordinate with metal ions, forming metal complexes. Dipicolinic acid is well-known for its ability to chelate with divalent metal ions, especially calcium, and is a major component of bacterial endospores.
Oxidation: The compound can undergo oxidation reactions under appropriate conditions, leading to the formation of various oxidation products.
Amidation: The carboxylic acid groups can react with amines to form amides.
Hydrolysis: The ester bonds in dipicolinic acid esters can undergo hydrolysis in the presence of water and acid or base catalysts, resulting in the formation of the corresponding carboxylic acids and alcohols.
Substitution Reactions: The pyridine ring can undergo substitution reactions, where functional groups can be added or replaced.
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4-(2-((tert-Butoxycarbonyl)amino)ethoxy)pyridine-2,6-dicarboxylic acid
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