Q.Write about Gabriel phthalimide synthesis.
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Start your 14-day free trial to unlock the full solution →Gabriel phthalimide synthesis is the classic three-step route to pure primary (aliphatic) amines: deprotonate phthalimide, alkylate its nitrogen with an alkyl halide, then hydrolyse to release the free primary amine.
Step 1: Phthalimide (a cyclic imide with an acidic N–H, due to two flanking carbonyl groups) is treated with alcoholic potassium hydroxide (KOH). The acidic hydrogen is removed to form potassium phthalimide:
Phthalimide Potassium phthalimide
Step 2: Potassium phthalimide (the nitrogen now bears a negative charge / is a good nucleophile) is heated with an alkyl halide . The nitrogen displaces the halide in an reaction, giving N-alkyl phthalimide:
Potassium phthalimide N-alkylphthalimide
Step 3: The N-alkyl phthalimide is hydrolysed to release the primary amine. This can be done by boiling with aqueous mineral acid or alkali, but the more common and higher-yielding modification is hydrolysis with hydrazine () — the Ing–Manske modification — which cleaves the imide cleanly to give phthalhydrazide (which precipitates out) and the free primary amine:
N-alkylphthalimide Phthalhydrazide
Significance: Because the phthalimide nitrogen can only be alkylated once (it is a cyclic imide, not a simple that could get alkylated repeatedly like in the direct ammonia + alkyl halide method), this method gives a pure primary amine without contamination by secondary or tertiary amines or quaternary ammonium salts — the major drawback of directly alkylating ammonia.
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