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Q.Write the reaction mechanism for the formation of diethyl ether from ethanol at 413K. OR Write the reaction mechanism for acid catalysed dehydration of ethanol to form alkene.

Mizoram MbseMizoram Board of School Education HSSLC 2022Subjective· 2mImportance★★★★★
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Conc. H2SO4 protonates ethanol; a second ethanol molecule then displaces water in an SN2 step to give protonated ether, which loses H⁺ to form diethyl ether.

Mechanism (Williamson-type intermolecular dehydration at 413 K with excess ethanol and conc. H2SO4):

Step 1 — Protonation: CH3CH2OH+H2SO4→CH3CH2O+H2+HSO4−CH_3CH_2OH + H_2SO_4 \rightarrow CH_3CH_2\overset{+}{O}H_2 + HSO_4^-. The –OH oxygen of one ethanol molecule is protonated, converting the poor leaving group (OH⁻) into a good leaving group (H2O).

Step 2 — Nucleophilic attack (SN2): the oxygen lone pair of a second, unprotonated ethanol molecule attacks the electrophilic α-carbon of the protonated ethanol from the backside, displacing a water molecule and forming a protonated (oxonium) diethyl ether: CH3CH2O+H2+CH3CH2OH→CH3CH2O+H(C2H5)+H2OCH_3CH_2\overset{+}{O}H_2 + CH_3CH_2OH \rightarrow CH_3CH_2\overset{+}{O}H(C_2H_5) + H_2O.

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