Home Chemistry Heterocyclic Building Blocks Quinolines 2-(Quinolin-2-Yl)-4,5-Dihydrooxazole
Substitution Reactions: Depending on the specific substituents attached to the quinoline and oxazole rings, various substitution reactions may occur. For example, nucleophiles could attack electrophilic sites, leading to the replacement of a functional group.
Oxidation/Reduction Reactions: The compound may undergo oxidation or reduction reactions, depending on the nature of the substituents and reaction conditions. This could involve changes in the oxidation states of the nitrogen and oxygen atoms.
Cyclization Reactions: The compound may undergo intramolecular cyclization reactions under specific conditions. For example, it might form a cyclic compound by reacting with a nearby functional group on the same molecule.
Metal Complexation: If there are metal ions present, the compound may form complexes with them, depending on the nature of the metal and the ligands.
Aromatic Substitution Reactions: The aromatic nature of the quinoline ring suggests that it could potentially undergo various electrophilic aromatic substitution reactions.
Base-Catalyzed Reactions: Depending on the reactivity of the compound, it may undergo reactions in the presence of a base, such as elimination reactions or nucleophilic substitutions.
Acid-Catalyzed Reactions: Acidic conditions might lead to reactions such as protonation of specific groups or other transformations.
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4-(tert-Butyl)-2-(quinolin-2-yl)-4,5-dihydrooxazole
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4-Isopropyl-2-(quinolin-2-yl)-4,5-dihydrooxazole
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(S)-4-Isopropyl-2-(quinolin-2-yl)-4,5-dihydrooxazole
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(R)-4-(tert-Butyl)-2-(quinolin-2-yl)-4,5-dihydrooxazole
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(R)-4-Isopropyl-2-(quinolin-2-yl)-4,5-dihydrooxazole
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(S)-4-(tert-Butyl)-2-(quinolin-2-yl)-4,5-dihydrooxazole
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