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NCERT Exemplar · Q10

Q.Four anionic species are given:

(a) hydroxide ion, HO-;
(b) an alkoxide ion, RO- (R = alkyl);
(c) phenoxide ion, C6H5O-; and
(d) m-nitrophenoxide ion, a benzene ring carrying an O- and, at the meta position, a -NO2 group. Which of these species can act as the strongest base?
(i) species (a), hydroxide HO-
(ii) species (b), alkoxide RO-
(iii) species (c), phenoxide C6H5O-
(iv) species (d), m-nitrophenoxide
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Base strength runs opposite to the acid strength of the conjugate acid: the weaker the parent acid, the stronger its conjugate base. The parent acids here are ROH, H2O, phenol and m-nitrophenol; ROH is the weakest acid, so RO- (alkoxide) is the strongest base.

Concept

For a conjugate acid-base pair, a weak acid gives a strong conjugate base. Rank the parent acids of each anion, then invert.

Ordering the parent acids (approximate pKa)

  • Alcohol, ROH: pKa about 16-18 (weakest acid) - alkyl groups push electron density onto O, so RO- is poorly stabilised.
  • Water, H2O: pKa about 15.7.
  • Phenol, C6H5OH: pKa about 10 - the phenoxide charge is delocalised into the ring.
  • m-Nitrophenol: pKa about 8 (strongest acid) - the -NO2 group withdraws electrons and stabilises the phenoxide, mainly by induction at the meta position.

Conclusion …

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