Home Chemistry Heterocyclic Building Blocks Pyridines 3-Methylpicolinic Acid
Acid-Base Reactions: 3-methylpicolinic acid can undergo acid-base reactions, where it can donate a proton from its carboxylic acid group or accept a proton from a base.
Esterification: It can undergo esterification reactions with alcohols in the presence of acid catalysts to form esters.
Amide Formation: It can react with amines to form amides.
Decarboxylation: Under certain conditions, it can undergo decarboxylation, resulting in the formation of the corresponding methylpyridine.
Oxidation: It can be oxidized to produce various oxidation products depending on the oxidizing agent and reaction conditions.
Metal Complexation: Like other pyridine carboxylic acids, it can form complexes with transition metals, influencing their reactivity and properties.
Substitution Reactions: It can undergo substitution reactions at the aromatic ring, typical of pyridine derivatives.
Reduction: It can be reduced to form corresponding pyridine or piperidine derivatives depending on the reducing agent and reaction conditions.
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