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NCERT Exemplar · Q19

Q.Name the electrophile produced in the reaction of benzene with benzoyl chloride in the presence of anhydrous AlCl3AlCl_3. Name the reaction also.

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The reaction is Friedel–Crafts acylation; the electrophile is the acylium ion CX6HX5COX+\ce{C6H5CO+} (benzoylium ion), generated from benzoyl chloride and AlClX3\ce{AlCl3}.

The question asks for two things: the name of the reaction and the identity of the electrophile. Let’s build the understanding from the ground up.


1. What kind of reaction is this?

Benzene is an aromatic ring — it’s electron-rich but not reactive enough to attack most electrophiles on its own. To substitute a hydrogen on benzene with an acyl group (−COR\ce{-COR}), we need a strong electrophile. The classic method is Friedel–Crafts acylation, where an acyl chloride (here benzoyl chloride, CX6HX5COCl\ce{C6H5COCl}) reacts with benzene in the presence of a Lewis acid catalyst like anhydrous AlClX3\ce{AlCl3}.

Note

Friedel–Crafts acylation is preferred over alkylation because it gives a single product — the acyl group deactivates the ring, preventing further substitution.


2. How is the electrophile generated?

The catalyst AlClX3\ce{AlCl3} is a Lewis acid — it accepts a lone pair from the chlorine atom of benzoyl chloride. This weakens the C−Cl\ce{C-Cl} bond, and the chloride ion leaves as AlClX4X−\ce{AlCl4-}. What remains is a positively charged species:

CX6HX5COCl+AlClX3→CX6HX5COX++AlClX4X−\ce{C6H5COCl + AlCl3 -> C6H5CO+ + AlCl4-}

The cation CX6HX5COX+\ce{C6H5CO+} is called the acylium ion (specifically, the benzoylium ion here). It is resonance-stabilised:

CX6HX5−CX+=O↔CX6HX5−CX+=OX−\ce{C6H5-C+=O <-> C6H5-C+=O-}

This delocalisation makes it a stable, effective electrophile.

Watch out

A common mistake is to think the electrophile is AlClX3\ce{AlCl3} itself or the acyl chloride directly. No — AlClX3\ce{AlCl3} only generates the electrophile; it does not attack benzene.


3. What happens next? …

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