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Q.a) Write the steps involved in the mechanism of acid catalysed dehydration of ethanol to ethene.

(3)
b) What is Lucas reagent? Which class of alcohols does not produce turbidity with it at room temperature? (2)
Karnataka PUCKarnataka II PUC Board 2024Subjective· 5mImportance★★★★★
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Ethanol loses water in three acid-catalysed steps (protonation, carbocation formation, deprotonation) to give ethene; Lucas reagent is conc. HCl + anhydrous ZnCl2\text{ZnCl}_2, and 1∘1^\circ alcohols show no turbidity at room temperature.

a) Mechanism — acid-catalysed dehydration of ethanol to ethene (E1)

Step 1 — Protonation: the OH\text{OH} group is protonated by the acid to form an oxonium ion (better leaving group).

CH3CH2OH+H+⇌CH3CH2O+H2\text{CH}_3\text{CH}_2\text{OH} + \text{H}^+ \rightleftharpoons \text{CH}_3\text{CH}_2\overset{+}{\text{O}}\text{H}_2

Step 2 — Formation of carbocation (slow, rate-determining): the protonated alcohol loses a water molecule to give the ethyl carbocation.

CH3CH2O+H2→CH3C+H2+H2O\text{CH}_3\text{CH}_2\overset{+}{\text{O}}\text{H}_2 \rightarrow \text{CH}_3\overset{+}{\text{C}}\text{H}_2 + \text{H}_2\text{O}

Step 3 — Loss of a proton: a proton is removed from the adjacent carbon, forming the C=C\text{C}=\text{C} double bond and regenerating the H+\text{H}^+ catalyst.

CH3C+H2→H2C=CH2+H+\text{CH}_3\overset{+}{\text{C}}\text{H}_2 \rightarrow \text{H}_2\text{C}=\text{CH}_2 + \text{H}^+

Overall: CH3CH2OH→443 Kconc. H2SO4H2C=CH2+H2O\text{CH}_3\text{CH}_2\text{OH} \xrightarrow[443\,\text{K}]{\text{conc. H}_2\text{SO}_4} \text{H}_2\text{C}=\text{CH}_2 + \text{H}_2\text{O} …

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