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Q.Why aromatic primary amines cannot be prepared by Gabriel phthalimide synthesis?

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2020Subjective· 1mImportance★★★★★
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Gabriel phthalimide synthesis is an SN2S_N2 displacement on an alkyl halide by phthalimide anion; aryl halides are essentially unreactive toward this mechanism, so the method is limited to aliphatic primary amines.

Gabriel synthesis (as normally used, for aliphatic amines): Potassium phthalimide's nitrogen anion is a good nucleophile that displaces a halide from an alkyl halide in an SN2S_N2 reaction, giving N-alkylphthalimide, which is then hydrolysed (or hydrazinolysed) to liberate the primary amine and phthalhydrazide:

Phthalimide−K++R–X⟶N-alkylphthalimide→H3O+/OH−R–NH2\text{Phthalimide}^{-}K^{+} + R\text{–X} \longrightarrow N\text{-alkylphthalimide} \xrightarrow{H_3O^{+}/OH^{-}} R\text{–}NH_2

Why it fails for aromatic amines. To make an arylamine (e.g. aniline) this way, one would need to react phthalimide anion with an aryl halide (e.g. chlorobenzene) by the same SN2S_N2 mechanism. But aryl halides do not undergo nucleophilic substitution under these conditions because:

  • the carbon–halogen bond in an aryl halide has partial double-bond character (from resonance/conjugation of the halogen lone pair with the ring), making it shorter and stronger than a normal C–X bond; …

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