Home Chemistry Heterocyclic Building Blocks Pyrrolidines 4-(Pyrrolidin-1-Yl)Piperidine
Substitution Reactions: The pyrrolidinyl or piperidine nitrogen atoms can potentially undergo substitution reactions with electrophiles. This could result in the formation of different derivatives.
Oxidation Reactions: The compound may be susceptible to oxidation under appropriate conditions. This could lead to the formation of various oxidation products.
Reduction Reactions: Under specific conditions, the compound might undergo reduction reactions, leading to the formation of reduced products.
Ring-opening Reactions: The piperidine ring could potentially undergo ring-opening reactions under certain conditions, yielding compounds with an open chain structure.
Formation of Complexes: 4-(pyrrolidin-1-yl)piperidine may form complexes with metal ions or other Lewis acids.
Alkylation or Acylation Reactions: The nitrogen atoms in both the pyrrolidinyl and piperidine rings are potentially nucleophilic and could undergo reactions with alkyl or acyl halides.
Heterocyclization Reactions: Depending on the reaction conditions, it may participate in further heterocyclization reactions, forming larger ring systems.
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3,3-Difluoro-4-(pyrrolidin-1-yl)piperidine hydrochloride
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tert-Butyl 3,3-difluoro-4-(pyrrolidin-1-yl)piperidine-1-carboxylate
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1-(Piperidin-4-yl)pyrrolidine-2-carboxamide
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4-(3,3-Difluoropyrrolidin-1-yl)piperidine dihydrochloride
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4-(Pyrrolidin-1-yl)piperidine dihydrochloride
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