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Q.Assertion (A) : Aromatic primary amines can be prepared by Gabriel Phthalimide synthesis. Reason (R) : Aryl halides do not undergo nucleophilic substitution with the anion formed by phthalimide.

CBSECBSE Class XII Board 2026MCQ· 1mImportance★★★★★
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Gabriel phthalimide synthesis works only for aliphatic primary amines because aryl halides resist nucleophilic substitution. Assertion is false, Reason is true.

Understanding Gabriel Phthalimide Synthesis

The Gabriel synthesis is a classic method for preparing primary amines. The strategy is elegant: phthalimide (with pKa≈9\mathrm{p}K_\mathrm{a} \approx 9) is deprotonated by base to form a nucleophilic anion, which then attacks an alkyl halide in an SN2\mathrm{S_N2} displacement. Hydrolysis of the resulting N-alkylphthalimide releases the primary amine.

The entire method hinges on a successful nucleophilic substitution step. That's where the limitation appears.

Why Aryl Halides Don't Cooperate

Aryl halides—compounds where a halogen is directly bonded to a benzene ring—are notoriously unreactive toward nucleophilic substitution under normal conditions. Three factors conspire against the reaction:

  1. Partial double-bond character: The lone pairs on the halogen overlap with the aromatic π\pi-system, giving the C–X bond some double-bond character. This strengthens the bond and makes it harder to break.

  2. SN2\mathrm{S_N2} geometry is impossible: An SN2\mathrm{S_N2} mechanism requires backside attack at the carbon bearing the leaving group. In an aryl halide, that carbon is sp2sp^2-hybridized and embedded in a planar ring—there's no accessible backside. The nucleophile would have to attack through the ring itself.

  3. SN1\mathrm{S_N1} is prohibitively unfavorable: Heterolytic cleavage would produce a phenyl cation, an extraordinarily unstable species. The empty pp-orbital would be orthogonal to the aromatic π\pi-system, offering no stabilization. The activation energy is far too high.

Watch out

A common mistake is assuming that because aryl halides contain a halogen, they behave like alkyl halides. The aromatic ring fundamentally changes the reactivity—standard nucleophilic substitutions simply don't occur.

Evaluating the Statements

Assertion (A): Claims aromatic primary amines can be prepared by Gabriel synthesis.

This is false. The synthesis requires an alkyl halide (or similar electrophile) that undergoes SN2\mathrm{S_N2} substitution with the phthalimide anion. Since aryl halides don't participate in this substitution, you cannot use Gabriel synthesis to make aniline or other aromatic primary amines. …

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