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Question of 147

Q.(a) Carry out the conversion: Chlorobenzene -> Phenol.

(b) Distinguish, using a chemical reaction, between: Chlorobenzene and Benzyl chloride.
(c) Why are alkyl halides insoluble in water? (1+1+1=3)
Tripura TbseHigher Secondary (+2 Stage) Examination 2025Subjective· 3mImportance★★★★★
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(a) Dow's process converts chlorobenzene to phenol via forced nucleophilic substitution then acidification. (b) AgNO3 distinguishes them by reactivity of the C-Cl bond. (c) Alkyl halides can't hydrogen-bond with water, so they don't dissolve.

(a) Chlorobenzene -> Phenol.

Chlorobenzene is heated with aqueous NaOH at 623 K under about 300 atm pressure (Dow's process). Even though chlorobenzene's C-Cl bond is normally resistant to nucleophilic substitution, these forcing conditions push the reaction to give sodium phenoxide:

C6H5Cl + 2NaOH (623K, 300 atm) -> C6H5ONa + NaCl + H2O

Acidifying the sodium phenoxide with a dilute acid (H+) then liberates phenol:

C6H5ONa + HCl -> C6H5OH + NaCl

(b) Distinguishing chlorobenzene and benzyl chloride.

Treat each with AgNO3 solution (e.g. alcoholic AgNO3). Benzyl chloride (C6H5CH2Cl) ionises readily via SN1 (forming a resonance-stabilised benzylic carbocation), so Cl- is released quickly and reacts with Ag+ to give an immediate/on-warming white precipitate of AgCl. Chlorobenzene (C6H5Cl) does NOT react with AgNO3 even on heating/warming, because its C-Cl bond has partial double-bond character (from resonance donation of chlorine's lone pair into the ring) making it very unreactive to ionisation or substitution - no precipitate forms.

(c) Why alkyl halides are insoluble in water. …

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