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NCERT Exemplar · Q66

Q.Assertion: p-nitrophenol is more acidic than phenol.
Reason: Nitro group helps in the stabilisation of the phenoxide ion by dispersal of negative charge due to resonance.

(i) Assertion and reason both are correct statements and reason is the correct explanation for assertion.
(ii) Assertion and reason both are correct statements but reason is not the correct explanation for assertion.
(iii) Assertion is correct statement but reason is wrong statement.
(iv) Assertion is wrong statement but reason is correct statement.
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The nitro group withdraws electron density through both inductive and resonance effects, stabilising the phenoxide ion more effectively than phenol alone. Both the assertion and reason are correct, and the reason correctly explains the assertion — so option (i) is correct.

Why this works: Electrophilic Aromatic Substitution and acidity

The acidity of a phenol is determined by how well its conjugate base (the phenoxide ion) can handle the negative charge. In phenol, the oxygen of the phenoxide ion carries a full negative charge — that’s energetically unfavourable. Anything that spreads out (delocalises) that charge makes the ion more stable, and therefore the original phenol more acidic.

The nitro group (−NO2-\text{NO}_2) is a powerful electron-withdrawing group. It pulls electron density away from the ring through two mechanisms: the inductive effect (through sigma bonds) and, more importantly, the resonance effect (through pi bonds). When attached at the para position, the nitro group can directly participate in resonance with the phenoxide oxygen, creating additional resonance structures that spread the negative charge onto the electronegative oxygen atoms of the nitro group itself.

Tip

The key insight: resonance stabilisation of the phenoxide ion is stronger when the nitro group is at the para or ortho position because the negative charge can be delocalised directly onto the nitro group’s oxygens. A meta nitro group cannot do this — it only exerts an inductive effect, so the acidity increase is smaller.

Step-by-step reasoning

  1. Assertion: p-nitrophenol is more acidic than phenol.

    This is true. The pKapK_a of phenol is about 10, while that of p-nitrophenol is about 7.2 — a difference of nearly 3 orders of magnitude. The nitro group stabilises the phenoxide ion so much that the acid becomes roughly 1000 times stronger.

  2. Reason: The nitro group helps stabilise the phenoxide ion by dispersing the negative charge through resonance. …

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