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One of the methods for preparing symmetrical or unsymmetrical acid anhydrides involves the treatment of acid chlorides with the sodium salt of carboxylic acids. The reaction proceeds via a nucleophilic acyl substitution.

The carboxylate ion acts as a nucleophile that attacks the carbonyl carbon of the acid chloride to form a tetrahedral intermediate. Subsequently, the re-formation of the carbonyl group with the loss of the chloride ion as a leaving group leads to the formation of an acid anhydride as the final product.

Figure1

An alternative method for preparing symmetrical or unsymmetrical acid anhydrides involves the treatment of acid chlorides with carboxylic acids in the presence of pyridine. The pyridine deprotonates the carboxylic acid and enhances its nucleophilicity.

Notably, symmetric anhydrides can be prepared by heating two carboxylic acid molecules, eliminating one equivalent of water. However, the method is limited to only acetic acid as most other acids would fail to survive the excess heat treatment.

The preparation of five or six-membered cyclic anhydrides involves heating the corresponding dicarboxylic acids.

Tags

Acid AnhydridesAcid ChloridesCarboxylic AcidsNucleophilic Acyl SubstitutionTetrahedral IntermediateLeaving GroupPyridineSymmetric AnhydridesDicarboxylic AcidsCyclic Anhydrides

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14.16 : Preparation of Acid Anhydrides

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14.1 : Dérivés de l’acide carboxylique : aperçu

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14.2 : Nomenclature des dérivés de l’acide carboxylique : halogénures acides, esters et anhydrides acides

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14.3 : Nomenclature des dérivés de l’acide carboxylique : amides et nitriles

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14.4 : Structures des dérivés de l’acide carboxylique

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14.5 : Propriétés physiques des dérivés de l’acide carboxylique

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14.6 : Acidité et basicité des dérivés de l’acide carboxylique

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14.7 : Spectroscopie des dérivés de l’acide carboxylique

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14.8 : Réactivité relative des dérivés de l’acide carboxylique

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14.9 : Substitution d’acyle nucléophile de dérivés d’acide carboxylique

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14.10 : Halogénures acides en acides carboxyliques : hydrolyse

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14.11 : Halogénures acides en esters : alcoolyse

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14.12 : Halogénures acides en amides : aminolyse

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14.13 : Halogénures acides en alcools : réduction du LiAlH4

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14.14 : Halogénures acides en alcools : réaction de Grignard

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