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Q.Aliphatic amines stronger base than aromatic amines, explain.

Haryana BsehBSEH Intermediate Board 2017Subjective· 2mImportance★★★★★
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Resonance delocalisation of nitrogen's lone pair into the aromatic ring makes aromatic amines much weaker bases than aliphatic amines, where the lone pair is fully localised and even reinforced by alkyl +I effects.

Basicity of an amine depends on how readily its nitrogen lone pair is available to accept a proton (H⁺).

Aliphatic amines (e.g. CH3NH2CH_3NH_2): The lone pair on nitrogen is localised entirely on the N atom. Additionally, the alkyl group attached to nitrogen has an electron-donating +I (inductive) effect, which pushes electron density towards nitrogen, increasing the lone pair's availability and making the amine a stronger base — in fact stronger than even ammonia.

Aromatic amines (e.g. aniline, C6H5NH2C_6H_5NH_2): Here, the nitrogen is directly attached to the benzene ring. The lone pair on nitrogen delocalises into the ring through resonance (conjugation with the π-electron system), spreading the electron density over the ring (ortho/para positions) rather than keeping it concentrated on nitrogen:

C6H5-NH2↔(resonance structures with + charge on N, delocalised - charge on ring)C_6H_5\text{-}NH_2 \leftrightarrow \text{(resonance structures with + charge on N, delocalised - charge on ring)} …

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