Home Chemistry Heterocyclic Building Blocks Indoles 2-(2-Methyl-1H-Indol-3-Yl)Acetic Acid
Acid-Base Reactions: The carboxylic acid group in the molecule can participate in acid-base reactions.
Esterification: The carboxylic acid functionality can undergo esterification reactions with alcohols in the presence of acid or base catalysts, forming esters.
Amide Formation: The carboxylic acid group can react with amines to form amide bonds.
Decarboxylation: Under certain conditions, carboxylic acids can undergo decarboxylation reactions, resulting in the loss of carbon dioxide and the formation of a substituted hydrocarbon.
Reduction: The carbonyl group in the carboxylic acid can potentially undergo reduction reactions to form alcohols. However, this might require strong reducing agents.
Substitution Reactions: The aromatic ring in the molecule could undergo electrophilic aromatic substitution reactions, depending on the reaction conditions.
Condensation Reactions: The indole ring may participate in various condensation reactions, such as the Fischer indole synthesis or other indole-forming reactions.
Nucleophilic Addition Reactions: The indole nitrogen may act as a nucleophile in certain reactions, participating in nucleophilic addition reactions.
Oxidation: The methyl group on the indole ring could potentially undergo oxidation reactions, depending on the reaction conditions.
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2-(5-Chloro-2-methyl-1H-indol-3-yl)acetic acid
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2-(5-Bromo-2-methyl-1H-indol-3-yl)acetic acid
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2-(5-Fluoro-2-methyl-1H-indol-3-yl)acetic acid
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