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Q.Aniline is less basic than ethylamine. Why?

Himachal HpboseHPBOSE Plus Two Board 2017Subjective· 1mImportance★★★★★
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In aniline, resonance spreads the nitrogen lone pair into the aromatic ring, reducing its availability for protonation, while in ethylamine the alkyl group's +I effect actually increases electron density on N.

In aniline (C6H5NH2\text{C}_6\text{H}_5\text{NH}_2), the lone pair of electrons on the nitrogen atom is conjugated with (delocalised into) the π-electron system of the benzene ring through resonance. This delocalisation spreads the lone pair's electron density over the ring, making it significantly less available to be donated to (accept) an incoming proton (H+\text{H}^+). Additionally, the nitrogen is attached to an sp2sp^2-hybridised aromatic carbon, which is more electronegative/electron-withdrawing (greater s-character) than an sp3sp^3 alkyl carbon, further reducing electron density at N.

In ethylamine (C2H5NH2\text{C}_2\text{H}_5\text{NH}_2), there is no such ring to delocalise the lone pair into — the lone pair on N remains fully localised and available for protonation. Moreover, the ethyl group exerts a +I+I (electron-donating inductive) effect, which actually increases the electron density on nitrogen, making it a stronger electron-pair donor (base).

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