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Q.Among the following, which is the strongest base ? (A) H3C−C6H4−NH2H_3C-C_6H_4-NH_2 (para-toluidine — benzene ring with −CH3-CH_3 and −NH2-NH_2 at para positions, drawn as a structure) (B) O2N−C6H4−NH2O_2N-C_6H_4-NH_2 (para-nitroaniline — benzene ring with −NO2-NO_2 and −NH2-NH_2 at para positions, drawn as a structure) (C) C6H5NH2C_6H_5NH_2 (aniline, drawn as a structure) (D) C6H5−CH2−NH2C_6H_5-CH_2-NH_2 (benzylamine — benzene ring with a −CH2−NH2-CH_2-NH_2 side chain, drawn as a structure)

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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Basicity of amines depends on the availability of the lone pair on nitrogen for protonation. Electron-donating groups increase basicity; electron-withdrawing groups decrease it. Benzylamine is the strongest base here because its amino group is separated from the aromatic ring by a methylene group, preventing resonance delocalisation of the lone pair into the ring.

The question asks you to compare the basic strength of four aromatic amines. The key idea is simple: a base is stronger if its lone pair is more available to accept a proton. In aromatic systems, the lone pair on nitrogen can be delocalised into the benzene ring through resonance, which reduces its availability. Any substituent that either enhances or reduces this delocalisation will affect basicity.

Let’s examine each compound step by step.

  1. Aniline (C) — C6H5NH2C_6H_5NH_2

    The lone pair on nitrogen is conjugated with the aromatic π-system. This resonance delocalisation makes the lone pair less available for protonation. Aniline is a weaker base than aliphatic amines (like benzylamine) because of this effect. Its pKbpK_b is about 9.4.

  2. para-Toluidine (A) — H3C−C6H4−NH2H_3C-C_6H_4-NH_2

    The methyl group at the para position is an electron-donating group (EDG) by hyperconjugation and inductive effect. It pushes electron density toward the ring, which slightly increases the electron density on nitrogen. This makes the lone pair more available than in aniline. So para-toluidine is a stronger base than aniline, but still weaker than an aliphatic amine because the resonance delocalisation is still present.

  3. para-Nitroaniline (B) — O2N−C6H4−NH2O_2N-C_6H_4-NH_2

    The nitro group is a strong electron-withdrawing group (EWG) by both inductive and resonance effects. It pulls electron density away from the ring, and through resonance, it further delocalises the lone pair on nitrogen into the ring and onto the nitro group. This drastically reduces the availability of the lone pair. para-Nitroaniline is the weakest base among the four.

  4. Benzylamine (D) — C6H5−CH2−NH2C_6H_5-CH_2-NH_2 …

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