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Example · Example 24

Q.Describe the Williamson synthesis of methoxyethane (CH3OCH2CH3\text{CH}_3\text{OCH}_2\text{CH}_3) starting from ethanol and methanol, and explain why the alkyl halide partner should be primary.

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Sodium ethoxide (from ethanol + Na) is treated with bromomethane (from methanol's derived halide): the ethoxide oxygen's lone pair attacks the unhindered methyl carbon of CH3Br\text{CH}_3\text{Br} from the backside, displacing bromide in a clean SN2S_N2 substitution, CH3CH2O−Na++CH3Br→CH3CH2OCH3+NaBr\text{CH}_3\text{CH}_2\text{O}^-\text{Na}^+ + \text{CH}_3\text{Br} \rightarrow \text{CH}_3\text{CH}_2\text{OCH}_3 + \text{NaBr}. The alkyl halide must be primary (here, methyl, the most unhindered case of all) because an alkoxide ion is a reasonably strong, somewhat bulky base as well as a nucleophile: with a secondary or, especially, a tertiary halide, the alkoxide would instead tend to remove a beta-hydrogen in a competing E2 elimination, forming an alkene rather than the desired ether. Using a primary (here, methyl) hal …

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