Home Chemistry Heterocyclic Building Blocks Pyridines 2,4-Dichloropyridine
Substitution Reactions: The chlorine atoms in 2,4-dichloropyridine can be substituted with other functional groups or atoms through nucleophilic substitution reactions. For instance, nucleophiles such as amines, alcohols, or thiols can replace the chlorine atoms to form substituted pyridine derivatives.
Heterocyclic Chemistry: 2,4-dichloropyridine is a heterocyclic compound. It can participate in various heterocyclic reactions such as cyclization reactions to form fused heterocyclic compounds or condensation reactions with other heterocycles.
Metalation Reactions: The pyridine ring in 2,4-dichloropyridine can undergo metalation reactions, where a metal atom replaces a hydrogen atom on the ring. This metalation can be followed by various transformations, such as cross-coupling reactions or coordination chemistry.
Oxidation and Reduction Reactions: The presence of chlorine atoms makes 2,4-dichloropyridine susceptible to oxidation and reduction reactions. These reactions can lead to the formation of different oxidation states of nitrogen and carbon atoms within the pyridine ring.
Functional Group Transformations: The functional groups present in 2,4-dichloropyridine, such as chlorides and pyridine, can undergo various transformations, including reactions with acids, bases, or other reagents to introduce or modify other functional groups.
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