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Q.Arrange the following in decreasing order of their basic strength: C6H5NH2C_6H_5NH_2, C2H5NH2C_2H_5NH_2, (C2H5)2NH(C_2H_5)_2NH, NH3NH_3

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2025Subjective· 1mImportance★★★★★
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Diethylamine is the strongest base (two electron-donating ethyl groups, still well solvated), followed by ethylamine, then unsubstituted ammonia, with aniline the weakest because the ring delocalises the nitrogen lone pair by resonance.

Basicity of an amine depends on how available the nitrogen lone pair is to accept a proton, which in aqueous solution is governed by three competing effects: (i) the +I (electron-donating) effect of alkyl groups, which pushes electron density onto N and increases basicity; (ii) steric hindrance and the extent of solvation (H-bonding) of the resulting ammonium cation, which is reduced by bulky/more numerous alkyl groups and lowers basicity; and (iii) resonance delocalisation of the lone pair, which sharply lowers basicity when N is attached to an aromatic ring.

  • (C2H5)2NH(C_2H_5)_2NH (diethylamine, 2°): two ethyl groups give a strong +I effect, and being only disubstituted it is still reasonably well solvated in water — the strongest base of the set.
  • C2H5NH2C_2H_5NH_2 (ethylamine, 1°): one +I-donating ethyl group, well solvated — a stronger base than plain ammonia but weaker than the disubstituted amine above. …

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