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Example · Example 20

Q.Explain why aniline (C6H5NH2\text{C}_6\text{H}_5\text{NH}_2) is a considerably weaker base than both ammonia and ethylamine, referring to the fate of nitrogen's lone pair in the aromatic ring.

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In ammonia and ethylamine, nitrogen's lone pair sits in a localised sp3sp^3 orbital, fully available to accept a proton. In aniline, that same lone pair overlaps with the aromatic ring's π\pi system and is delocalised by resonance onto the ring's ortho and para carbons -- the very same delocalisation that makes the aniline ring strongly activated toward electrophilic substitution. Using the lone pair this way to stabilise the neutral molecule means it is significantly LESS available to accept an external proton, so protonating aniline requires sacrificing that resonance stabilisation -- a …

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