Q.Convert
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Start your 14-day free trial to unlock the full solution →Use diazonium chemistry to swap or delete the amino group without disturbing anything else on the ring. For (i), the amino and methyl groups of 3-methylaniline are already meta to each other — diazotise, form the diazonium fluoroborate with , then heat with to replace directly with at the same position, giving 3-nitrotoluene. For (ii), brominate free aniline directly (excess bromine water → 2,4,6-tribromoaniline), then delete the amino group via diazotisation and , giving 1,3,5-tribromobenzene.
The Core Concept: The Diazonium Route
The amino group () is a powerful ortho/para director and a strong activator. This makes it excellent for placing substituents at specific positions — but it also means aniline cannot be nitrated or mono-brominated cleanly. Diazonium chemistry resolves this: the amino group does its directing work (or simply marks a position), and is then either converted into the substituent needed at that very carbon, or removed entirely.
(i) 3-Methylaniline → 3-Nitrotoluene
In 3-methylaniline, the methyl group sits at C-3 relative to the amino group at C-1 — they are already meta to each other, which is exactly the / relationship the target needs. So the cleanest route is not to nitrate the ring at all: it is to convert the existing amino group directly into a nitro group at the position it already occupies.
1. Diazotise the amine.
Treat 3-methylaniline with and dilute HCl at 273–278 K:
2. Convert the diazonium chloride into the fluoroborate.
Treat the diazonium salt with fluoroboric acid; the stable, sparingly soluble diazonium fluoroborate separates:
3. Replace with .
Heat the diazonium fluoroborate with aqueous in the presence of copper — nitrite displaces the diazonium group:
Because the substitution happens at the same carbon the amino group occupied, the methyl group never moves and the new nitro group inherits the meta relationship. The product is 3-nitrotoluene.
Do not reach for here — that reagent replaces with plain (deamination) and would simply regenerate toluene, deleting the nitrogen instead of converting it into the group the target needs. is the right reagent for part (ii) below, where the amino group must disappear; it is the wrong reagent here.
Diazonium → nitro: — one of the standard diazonium substitutions, alongside , , and .
(ii) Aniline → 1,3,5-Tribromobenzene
The target is a benzene ring with three bromines in a 1,3,5 pattern and no nitrogen. The free amino group is the perfect tool: it activates the ring so strongly that bromine water substitutes all three ortho/para positions almost instantly.
1. Brominate free aniline directly.
Add excess bromine water at room temperature — the reaction is immediate and gives a white precipitate:
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