Home Chemistry Heterocyclic Building Blocks Pyridines 4-Bromo-2-Fluoropyridine
Substitution Reactions: The bromine and fluorine atoms are susceptible to substitution reactions. For example, nucleophilic substitution reactions could occur where the bromine or fluorine atom is replaced by another nucleophile.
Metalation Reactions: The pyridine ring can undergo metalation reactions where a metal atom or group is introduced onto the ring. This could lead to various organometallic compounds.
Cross-Coupling Reactions: 4-Bromo-2-fluoropyridine could participate in cross-coupling reactions, where it reacts with another organic compound containing suitable functional groups under the influence of a catalyst, typically a transition metal catalyst.
Reduction Reactions: The bromine and fluorine atoms could potentially undergo reduction reactions to form corresponding organohalides with different oxidation states.
Functional Group Transformations: The compound could undergo various functional group transformations such as oxidation, reduction, or substitution reactions to yield compounds with different functionalities.
Arylation Reactions: The compound could undergo arylation reactions where an aryl group is introduced onto the pyridine ring, or the existing aryl group is modified.
Heterocyclic Chemistry: 4-Bromo-2-fluoropyridine could participate in heterocyclic chemistry, where it reacts with other heterocyclic compounds to form fused or bridged heterocycles.
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4-Bromo-2-fluoro-3-(trifluoromethyl)pyridine
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