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Q.Write the SN2S_N2 mechanism involved in the conversion of chloromethane to methanol.

Karnataka PUCKarnataka II PUC Board 2026Subjective· 2mImportance★★★★★
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In the SN2S_N2 conversion of chloromethane to methanol, hydroxide attacks the carbon from the side opposite to chlorine in a single concerted step, forming a five-coordinate transition state and displacing chloride.

Mechanism (bimolecular nucleophilic substitution, SN2S_N2):

  1. The nucleophile OH−\text{OH}^- approaches the electrophilic carbon of CH3Cl\text{CH}_3\text{Cl} from the side directly opposite to the leaving group (Cl\text{Cl}).
  2. In a single step, the new C–O\text{C–O} bond begins to form as the old C–Cl\text{C–Cl} bond breaks. This passes through a transition state in which carbon is partially bonded to both OH\text{OH} and Cl\text{Cl} and the three H atoms lie in a plane (trigonal bipyramidal, five groups around C):

HO−+CH3Cl→[ HO⋯CH3⋯Cl ]‡→CH3OH+Cl−\text{HO}^- + \text{CH}_3\text{Cl} \rightarrow \left[\,\text{HO}\cdots\overset{\displaystyle}{\text{C}}\text{H}_3\cdots\text{Cl}\,\right]^{\ddagger} \rightarrow \text{CH}_3\text{OH} + \text{Cl}^-

  1. As Cl−\text{Cl}^- leaves, the three C–H bonds invert (like an umbrella turning inside out — Walden inversion) and methanol is formed. …

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