Home Chemistry Heterocyclic Building Blocks Indoles (9H-Fluoren-9-Yl)Methyl (2-(1H-Indol-3-Yl)Ethyl)Carbamate
Esterification: The molecule can be subjected to esterification reactions, where the carbamate group is converted into an ester using various reagents such as acid chlorides or anhydrides. This would result in the formation of a different ester.
Amination: The amine functionality in the molecule can be further modified through amination reactions, allowing the introduction of different amine substituents. This might involve reactions with various amine reagents and appropriate catalysts.
Substitution Reactions: The aromatic phenyl and indole rings are susceptible to various substitution reactions, such as electrophilic aromatic substitution or nucleophilic aromatic substitution, depending on the reaction conditions and reagents.
Reduction: The molecule may undergo reduction reactions to convert functional groups like carbonyl groups into corresponding alcohols or other derivatives. Common reducing agents include sodium borohydride (NaBH4) or lithium aluminum hydride (LiAlH4).
Amide Formation: The amine group in the molecule can react with various carboxylic acids or acid chlorides to form amide derivatives.
Protecting Group Chemistry: Depending on the synthetic strategy, protecting groups can be introduced or removed selectively to manipulate the reactivity of specific functional groups in the molecule.
Oxidation: The molecule can be subjected to oxidation reactions to convert functional groups such as alcohols to carbonyl compounds, or to further oxidize indole or other aromatic moieties.
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