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Q.How will you convert chlorobenzene to p-nitrophenol? OR Convert phenol to salicylic acid (2-hydroxybenzoic acid).

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2023Subjective· 2mImportance★★★★★
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Nitrating chlorobenzene puts an −NO2-NO_2 group para to −Cl-Cl, and that −NO2-NO_2 activates the ring enough for the −Cl-Cl to be displaced by hydroxide via nucleophilic aromatic substitution, giving p-nitrophenol.

Step 1 — Nitration: Chlorine is a weakly deactivating but ortho/para-directing group (its lone pair donates into the ring by resonance, even though its inductive effect withdraws electron density overall). Treating chlorobenzene with the nitrating mixture (conc. HNO3HNO_3/conc. H2SO4H_2SO_4) gives a mixture of ortho- and para-nitrochlorobenzene:

C6H5Cl→conc. H2SO4conc. HNO3  o- and p-O2N-C6H4-ClC_6H_5Cl \xrightarrow[\text{conc. }H_2SO_4]{\text{conc. }HNO_3} \; o\text{-} \text{ and } p\text{-O}_2N\text{-}C_6H_4\text{-Cl}

The para isomer (higher melting, easily separated from the ortho isomer by fractional crystallization) is carried forward.

Step 2 — Hydrolysis (nucleophilic aromatic substitution): In p-nitrochlorobenzene, the −NO2-NO_2 group is positioned para to −Cl-Cl and can strongly stabilize the negatively-charged Meisenheimer (addition) intermediate formed when OH−OH^- attacks the carbon bearing −Cl-Cl (the negative charge delocalizes onto the oxygen atoms of the para −NO2-NO_2 group by resonance). This makes the −Cl-Cl displaceable, unlike in ordinary chlorobenzene:

p-O2N-C6H4-Cl→Δ,  high pressureNaOH(aq)p-O2N-C6H4-ONa→H+p-O2N-C6H4-OH (p-nitrophenol)p\text{-O}_2N\text{-}C_6H_4\text{-Cl} \xrightarrow[\Delta,\; \text{high pressure}]{\text{NaOH(aq)}} p\text{-O}_2N\text{-}C_6H_4\text{-ONa} \xrightarrow{H^+} p\text{-O}_2N\text{-}C_6H_4\text{-OH (p-nitrophenol)}

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