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.
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Start your 14-day free trial to unlock the full solution →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 ) is deprotonated by base to form a nucleophilic anion, which then attacks an alkyl halide in an 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:
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Partial double-bond character: The lone pairs on the halogen overlap with the aromatic -system, giving the C–X bond some double-bond character. This strengthens the bond and makes it harder to break.
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geometry is impossible: An mechanism requires backside attack at the carbon bearing the leaving group. In an aryl halide, that carbon is -hybridized and embedded in a planar ring—there's no accessible backside. The nucleophile would have to attack through the ring itself.
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is prohibitively unfavorable: Heterolytic cleavage would produce a phenyl cation, an extraordinarily unstable species. The empty -orbital would be orthogonal to the aromatic -system, offering no stabilization. The activation energy is far too high.
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 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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