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Question of 147

Q.What happens when

(a) Ethyl chloride is treated with aqueous KOH
(b) Chlorobenzene is treated with methyl chloride in the presence of anhydrous AlCl3
(c) Bromobenzene is treated with methyl bromide and sodium in the presence of dry ether.
Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2026Subjective· 3mImportance★★★★★
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(a) Ethyl chloride + aq. KOH gives ethanol by nucleophilic substitution; (b) chlorobenzene + methyl chloride/anhydrous AlCl₃ gives o- and p-chlorotoluene by Friedel-Crafts alkylation; (c) bromobenzene + methyl bromide + Na/dry ether gives toluene by the Wurtz-Fittig reaction.

(a) Ethyl chloride treated with aqueous KOH:

Aqueous KOH provides OH⁻, a strong nucleophile, which displaces the chloride ion from ethyl chloride (substitution, since it's a primary halide reacting with a strong base/nucleophile):

CH₃CH₂Cl + KOH(aq) → CH₃CH₂OH + KCl

Product: ethanol.

(b) Chlorobenzene treated with methyl chloride in the presence of anhydrous AlCl₃:

Anhydrous AlCl₃ is a Lewis acid catalyst that generates the electrophile CH₃⁺ from CH₃Cl. This is a Friedel-Crafts alkylation on the chlorobenzene ring. Since -Cl is an ortho/para-directing (though deactivating) group, the incoming methyl group substitutes mainly at the ortho and para positions relative to Cl:

C₆H₅Cl + CH₃Cl --(anhyd. AlCl₃)--> o-ClC₆H₄CH₃ + p-ClC₆H₄CH₃ + HCl …

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