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Q.Out of the following, the strongest base in aqueous solution is (A) Methylamine (B) Dimethylamine (C) Trimethylamine (D) Aniline

CBSECBSE Class XII Board 2020MCQ· 1mImportance★★★★★
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In aqueous solution, the basicity of aliphatic amines depends on a balance between the inductive effect (which increases electron density on nitrogen) and solvation/hydration of the conjugate acid. For methyl-substituted amines, dimethylamine is the strongest base because it has the best combination of +I effect and solvation — trimethylamine, despite having three methyl groups, suffers from poor solvation of its bulky conjugate acid.

The question asks for the strongest base in aqueous solution among methylamine, dimethylamine, trimethylamine, and aniline. The key phrase is "in aqueous solution" — because basicity in water is not just about the gas-phase electron density on nitrogen. It depends on two competing factors:

  1. Inductive effect — alkyl groups are electron-donating (+I), so more alkyl groups should make the nitrogen more electron-rich and thus more basic.
  2. Solvation effect — the conjugate acid (the protonated amine, RNH3+RNH_3^+) is stabilised by hydrogen bonding with water. More alkyl groups on the nitrogen hinder this solvation, making the conjugate acid less stable and thus the base weaker.

Aniline is an aromatic amine — its lone pair is delocalised into the benzene ring, making it a much weaker base than any aliphatic amine. So (D) is out immediately.

Now, among the three methylamines, the order in aqueous solution is:

  1. Methylamine (CH3NH2CH_3NH_2) — one methyl group. Moderate +I effect, good solvation of CH3NH3+CH_3NH_3^+ (three H atoms on N for H-bonding).
  2. Dimethylamine ((CH3)2NH(CH_3)_2NH) — two methyl groups. Stronger +I effect than methylamine, and its conjugate acid (CH3)2NH2+(CH_3)_2NH_2^+ still has two H atoms for solvation — a good balance. …

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