Home Chemistry Heterocyclic Building Blocks Oxazolines 4,4',5,5'-Tetrahydro-2,2'-Bioxazole
Hydrolysis: Under acidic or basic conditions, the oxazole ring can undergo hydrolysis to yield a carboxylic acid and an amine.
Oxidation: Depending on the conditions, the compound may be susceptible to oxidation reactions. Oxidizing agents like permanganate or chromic acid may be able to oxidize the compound.
Reduction: Reduction reactions can convert the oxazole ring into a dihydrooxazole or tetrahydrooxazole, depending on the reducing agent and conditions.
Substitution reactions: The compound may undergo various substitution reactions with appropriate reagents, particularly if there are reactive functional groups present.
Formation of derivatives: 4,4',5,5'-tetrahydro-2,2'-bioxazole can be used as a starting material for the synthesis of various compounds through derivatization reactions.
Ring-opening reactions: Depending on the conditions and reagents, ring-opening reactions of the oxazole ring may occur.
Condensation reactions: The compound could participate in condensation reactions to form larger molecules, such as polymers.
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(4S,4'S)-4,4'-Di((S)-sec-butyl)-4,4',5,5'-tetrahydro-2,2'-bioxazole
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(4S,4'S)-4,4'-Diisobutyl-4,4',5,5'-tetrahydro-2,2'-bioxazole
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(4R,4'R)-4,4'-Diisobutyl-4,4',5,5'-tetrahydro-2,2'-bioxazole
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(4R,4'R)-4,4'-Di((S)-sec-butyl)-4,4',5,5'-tetrahydro-2,2'-bioxazole
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(4S,4'S)-4,4'-Di-sec-butyl-4,4',5,5'-tetrahydro-2,2'-bioxazole
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(S,S)-4,4-Dimethyl-4,5,4',5'-tetrahydro [2.2]bioxazolyl
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(4S,4'S)-4,4'-Bis(1,1-dimethylethyl)-4,4',5,5'-tetrahydro-2,2'-bioxazole
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(S,S)-4,4'-Diisopropyl-4,5,4',5'-tetrahydro[2.2]bioxazolyl
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(4R,4'R)-4,4'-Diisopropyl-4,4',5,5'-tetrahydro-2,2'-bioxazole
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