14.23
Amides undergo hydrolysis in aqueous acid or aqueous base to give carboxylic acids. These reactions are slow and require heating.
Acid-catalyzed amide hydrolysis begins with the carbonyl oxygen protonation, followed by the nucleophilic addition of water to the carbonyl carbon, forming a tetrahedral intermediate.
Further, deprotonation of the tetrahedral intermediate and protonation of the nitrogen converts the amino group into a better leaving group.
Next, the carbonyl group is re-formed by eliminating ammonia. Final deprotonation yields a carboxylic acid.
Notably, ammonium ion, a weak acid, is formed as a by-product, driving the equilibrium towards products.
Basic hydrolysis of amides is another nucleophilic acyl substitution involving hydroxide as a nucleophile.
The mechanism begins with the nucleophilic attack of the hydroxide ion at the carbonyl carbon, forming a tetrahedral intermediate.
Subsequently, the carbonyl group is reconstructed with the departure of an amide ion.
Final deprotonation yields a carboxylate ion and ammonia. This step drives the reaction to completion, pushing the equilibrium towards the product.
Acidification of the carboxylate ion gives free acid.
Amiden kunnen of door zuur gekatalyseerde hydrolyse of door base bevorderde hydrolyse ondergaan via een typische nucleofiele acylsubstitutie. Elke hyd…
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