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NCERT Exemplar · Q12

Q.Ionic species are stabilised by the dispersal of charge. Which of the following carboxylate ion is the most stable?

(i) CH3—C(=O)—O^-
(ii) Cl—CH2—C(=O)—O^-
(iii) F—CH2—C(=O)—O^-
(iv) F2CH—C(=O)—O^-
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Carboxylate stability increases with electron-withdrawing groups that disperse the negative charge through the inductive effect. Option (iv) FX2CH−COOX−\ce{F2CH-COO^-} is most stable because two fluorine atoms exert the strongest combined −I-I effect.

The stability of a carboxylate ion hinges on how well the negative charge on the oxygen can be dispersed. The more the charge spreads away from the oxygen atoms, the lower the energy of the ion and the more stable it becomes.

The inductive effect is the key mechanism here. Electron-withdrawing groups pull electron density through σ\sigma-bonds, effectively diluting the concentration of negative charge. Halogens, particularly fluorine, are strongly electronegative and exert a powerful −I-I (negative inductive) effect. When attached near the carboxylate group, they draw electron density toward themselves, stabilising the anion.

The strength of this stabilisation depends on two factors:

  • Electronegativity of the substituent (how strongly it withdraws electrons)
  • Number of electron-withdrawing groups

Let's compare each option systematically:

  1. Option (i): CHX3−COOX−\ce{CH3-COO^-} (acetate ion)

    The methyl group is electron-donating through a +I+I effect. It pushes electron density toward the carboxylate, increasing the charge concentration on oxygen. This destabilises the anion. This is our baseline—the least stable.

  2. Option (ii): Cl−CHX2−COOX−\ce{Cl-CH2-COO^-} (chloroacetate ion)

    Chlorine is electronegative (EN ≈ 3.0) and withdraws electrons through the −I-I effect. The negative charge is partially dispersed toward the Cl\ce{Cl} atom, stabilising the carboxylate relative to acetate.

  3. Option (iii): F−CHX2−COOX−\ce{F-CH2-COO^-} (fluoroacetate ion)

    Fluorine is the most electronegative element (EN ≈ 4.0), so it exerts a stronger −I-I effect than chlorine. The charge dispersal is more effective, making this ion more stable than chloroacetate.

  4. Option (iv): FX2CH−COOX−\ce{F2CH-COO^-} (difluoroacetate ion) …

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