Home Chemistry Heterocyclic Building Blocks Piperidines 4,4-Difluoropiperidine
Substitution Reactions: The fluorine atoms can be substituted by various nucleophiles or electrophiles, leading to the formation of substituted derivatives.
Reduction: The piperidine ring can undergo reduction reactions to form saturated or partially saturated derivatives, using reducing agents such as hydrogen gas over a metal catalyst or hydride reagents.
Ring-opening Reactions: The piperidine ring may undergo ring-opening reactions under certain conditions, leading to the formation of linear or branched compounds.
Functionalization: The fluorine atoms can undergo functionalization reactions, such as nucleophilic substitution, to introduce other functional groups onto the piperidine ring.
Cyclization: It can participate in cyclization reactions to form heterocyclic compounds with different ring sizes or substitution patterns.
Halogenation: The piperidine ring can undergo halogenation reactions, either through electrophilic aromatic substitution or radical halogenation, to introduce halogen atoms onto the ring.
Oxidation: The piperidine ring or the carbon atoms adjacent to it can be oxidized to form various functional groups, such as ketones, alcohols, or carboxylic acids.
Condensation Reactions: It can participate in condensation reactions with carbonyl compounds or other nucleophiles to form cyclic compounds or larger molecules.
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2-(1-(tert-Butoxycarbonyl)-4,4-difluoropiperidin-3-yl)acetic acid
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1-(2-Bromoethyl)-4,4-difluoropiperidine hydrobromide
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tert-Butyl 3-acetoxy-4,4-difluoropiperidine-1-carboxylate
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