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NCERT Exemplar · Q35

Q.Why does acetylation of −NH2-NH_2 group of aniline reduce its activating effect?

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Acetylation converts the strongly activating −NH2-NH_2 group into a moderately activating −NHCOCH3-NHCOCH_3 group by delocalising the nitrogen lone pair into the carbonyl π\pi-system, reducing its availability for resonance donation to the benzene ring.

The key to understanding this lies in the resonance effect — specifically, how the lone pair on nitrogen interacts with the rest of the molecule.

Aniline’s −NH2-NH_2 group is a powerful activating and ortho/para-directing group because the nitrogen lone pair is directly conjugated with the benzene ring. This lone pair can delocalise into the ring, increasing electron density at the ortho and para positions. The more freely this lone pair is available, the stronger the activation.

When you acetylate aniline, you replace one hydrogen on the −NH2-NH_2 with an acetyl group (−COCH3-COCH_3), forming acetanilide. The product now has an amide linkage: −NHCOCH3-NHCOCH_3.

  1. The critical structural change: The acetyl group contains a carbonyl (C=OC=O) bond. The carbon of this carbonyl is sp2sp^2 hybridised and is directly attached to the nitrogen. This creates a new, competing resonance interaction.

  2. The competition for the lone pair: The nitrogen lone pair can now delocalise in two directions:

    • Into the benzene ring (as in aniline), activating the ring.
    • Into the carbonyl group of the acetyl group, forming a resonance structure where the nitrogen has a partial positive charge and the carbonyl oxygen has a partial negative charge.

    This second resonance is very significant. The carbonyl group acts as an electron sink, pulling electron density away from the nitrogen.

  3. The net effect on activation: Because the lone pair is now partially tied up in resonance with the carbonyl, it is less available to donate into the benzene ring. The electron-donating capacity of the −NHCOCH3-NHCOCH_3 group is therefore much weaker than that of the free −NH2-NH_2 group.

    Resonance hybrid of acetanilide:

    Ph−N⊖−C⊕=O⊖⟷Ph−N=C−O⊖\text{Ph} - \overset{\ominus}{\text{N}} - \overset{\oplus}{\text{C}} = \overset{\ominus}{\text{O}} \quad \longleftrightarrow \quad \text{Ph} - \text{N} = \text{C} - \overset{\ominus}{\text{O}}

    The lone pair is shared between the ring and the carbonyl. …

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