Q.Write chemical reaction for the preparation of phenol from chlorobenzene.
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Start your 14-day free trial to unlock the full solution →Phenol is prepared from chlorobenzene by nucleophilic aromatic substitution via a benzyne intermediate under high-temperature, high-pressure conditions with aqueous NaOH, followed by acidification. The final product is .
The reaction you are asking about — the conversion of chlorobenzene to phenol — is a classic example of a nucleophilic aromatic substitution that proceeds through a benzyne intermediate. This is not the usual electrophilic substitution you might expect for an aromatic ring. Instead, the chlorine atom is displaced by a hydroxide ion, but the mechanism is unusual because the aromatic ring is normally resistant to direct nucleophilic attack.
Why does this happen? Chlorobenzene has a carbon–chlorine bond that is slightly polarised, but the lone pairs on chlorine can donate into the ring, making the C–Cl bond stronger than in an alkyl halide. A direct attack is impossible because the ring’s system blocks the backside approach. An pathway would require forming a phenyl cation, which is highly unstable. So, nature takes a different route: under extreme conditions (high temperature and pressure), a strong base abstracts a proton from the position ortho to chlorine, leading to elimination of HCl and formation of a highly reactive benzyne intermediate. The hydroxide ion then attacks this triple bond, and after tautomerisation and acidification, phenol is obtained.
Let’s walk through the reaction step by step.
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Reaction conditions
Chlorobenzene is heated with aqueous sodium hydroxide () at a temperature of about and a pressure of around . These harsh conditions are necessary to force the reaction to occur.
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Formation of the benzyne intermediate
The hydroxide ion acts as a strong base. It abstracts a proton from the carbon atom ortho to the chlorine. The electrons from the broken C–H bond move to form a second bond between the ortho carbon and the carbon bearing the chlorine. Simultaneously, the C–Cl bond breaks, and the chlorine leaves as . This creates a benzyne — a benzene ring with an extra triple bond between two adjacent carbons.
The reaction can be written as:
A common mistake is to think that the hydroxide directly displaces chlorine in a single step. That does not happen here. The benzyne intermediate is key — without it, the reaction would not proceed.
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Nucleophilic attack on benzyne
The benzyne intermediate is extremely reactive because the triple bond is strained (the bond angles are far from the ideal for a triple bond). The hydroxide ion attacks one of the sp-hybridised carbons of the triple bond, adding a group and generating a negative charge on the adjacent carbon. This forms a phenoxide ion.
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