Q.What is the action of acetic anhydride on ethylamine, diethylamine and triethylamine ?
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Start your 14-day free trial to unlock the full solution →Step 1. Recall acylation's requirement (section 13.6.4). Primary and secondary amines have at least one replaceable N-H hydrogen that acetic anhydride's acyl group can substitute; tertiary amines, with no N-H hydrogen left, cannot undergo this substitution.
Step 2. Ethylamine (primary). C2H5-NH2 + (CH3CO)2O gives C2H5-NH-CO-CH3 (N-ethylacetamide/N-ethylethanamide) + CH3COOH -- one of the two N-H hydrogens is replaced by the acetyl group (the reaction can in principle be pushed to replace the second N-H too with a large excess of anhydride, though the mono-acetylated amide is the standard first product, exactly analogous to the acetyl-chloride worked examples of section 13.6.4).
Step 3. Diethylamine (secondary). (C2H5)2NH + (CH3CO)2O gives (C2H5)2N-CO-CH3 (N,N-diethylacetamide/N,N-diethylethanamide) + CH3COOH -- the single remaining N-H is replaced by the acetyl group. …
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