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Ch. 21 - Carboxylic Acid Derivatives
Wade - Organic Chemistry 9th Edition
Wade9th EditionOrganic ChemistryISBN: 9780135213728Non è quello che usi tu?Cambia libro di testo
Capitolo 21, Problema 34c

Suggest the most appropriate reagent for each synthesis, and explain your choice.
(c)

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Step 1: Analyze the transformation. The starting material is a ketone with a methoxy group (-OCH3) attached to the carbonyl carbon. The product is an alcohol (-CH2OH) where the methoxy group has been replaced by a hydroxymethyl group.
Step 2: Recognize the type of reaction. This transformation involves the reduction of the ester functional group (-COOCH3) to a primary alcohol (-CH2OH). This suggests the use of a reducing agent.
Step 3: Identify the appropriate reagent. Lithium aluminum hydride (LiAlH4) is a strong reducing agent commonly used to reduce esters to primary alcohols. It selectively reduces the ester group without affecting the double bond in the molecule.
Step 4: Explain the mechanism. LiAlH4 donates hydride ions (H-) to the carbonyl carbon of the ester, breaking the C=O bond and forming an intermediate alkoxide. Subsequent protonation during workup converts the alkoxide to the alcohol (-CH2OH).
Step 5: Note reaction conditions. The reaction typically requires an anhydrous solvent like ether and careful handling due to the reactivity of LiAlH4. After reduction, the reaction mixture is quenched with water or an acid to complete the conversion to the alcohol.

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