NCERT Exemplar · Q14
Q.Five compounds are given:
(a) phenol, C6H5OH;
(b) 4-nitrophenol (a benzene ring with -OH and a -NO2 group at the para position);
(c) 3-methoxyphenol (a benzene ring with -OH and an -OCH3 group at the meta position);
(d) 3-nitrophenol (a benzene ring with -OH and a -NO2 group at the meta position); and
(e) 4-methoxyphenol (a benzene ring with -OH and an -OCH3 group at the para position). Mark the correct order of decreasing acid strength.
(i) e > d > b > a > c
(ii) b > d > a > c > e
(iii) d > e > c > b > a
(iv) e > d > c > b > a
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Start your 14-day free trial to unlock the full solution →Acidity of a substituted phenol depends on how the substituent affects the stability of the phenoxide anion. -NO2 (electron-withdrawing) increases acidity, most from the para position where resonance operates; -OCH3 (electron-donating by resonance) decreases acidity, most from the para position. The resulting order of decreasing acidity is b > d > a > c > e.
Ranking
- b (p-nitrophenol): -NO2 at para stabilises phenoxide by both resonance and induction -> most acidic.
- d (m-nitrophenol): -NO2 at meta stabilises mainly by induction -> strong, but less than para.
- a (phenol): reference, no substituent effect.
- c (m-methoxyphenol): at meta, -OCH3 cannot donate electron density by resonance to the charge-bearing carbons, leaving it close to, and slightly less acidic than, phenol. …
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