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13.14 : Carboxylic Acids to Acid Chlorides

Carboxylic acids react with SOCl2 or PCl5 to form acid chlorides. Amongst the carboxylic acid derivatives, acid chlorides are the most reactive and synthetically important derivatives. They are useful reagents for Friedel–Crafts acylation of some aromatic compounds.

Figure1

An alternative reagent for converting a carboxylic acid to an acid chloride is phosphorus pentachloride. The mechanism involves the attack by a carboxylic acid at the phosphorus center of PCl5 while eliminating a chloride ion. Subsequently, the attack by this chloride ion at the carbonyl center results in an acid chloride, along with the formation of phosphorus oxychloride. The formation of a highly stable P=O bond drives the reaction forward.

Figure2

Tags
Carboxylic AcidsAcid ChloridesSOCl2PCl5Friedel Crafts AcylationPhosphorus PentachlorideMechanismCarbonylPhosphorus Oxychloride

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13.14 : Carboxylic Acids to Acid Chlorides

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13.1 : IUPAC Nomenclature of Carboxylic Acids

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13.2 : Physical Properties of Carboxylic Acids

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13.3 : Acidity of Carboxylic Acids

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13.4 : Substituent Effects on Acidity of Carboxylic Acids

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13.5 : IR and UV–Vis Spectroscopy of Carboxylic Acids

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13.6 : NMR and Mass Spectroscopy of Carboxylic Acids

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13.7 : Preparation of Carboxylic Acids: Overview

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13.8 : Preparation of Carboxylic Acids: Hydrolysis of Nitriles

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13.9 : Preparation of Carboxylic Acids: Carboxylation of Grignard Reagents

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13.10 : Reactions of Carboxylic Acids: Introduction

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13.11 : Carboxylic Acids to Esters: Acid-Catalyzed (Fischer) Esterification Overview

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13.12 : Carboxylic Acids to Esters: Acid-Catalyzed (Fischer) Esterification Mechanism

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13.13 : Carboxylic Acids to Methylesters: Alkylation using Diazomethane

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13.15 : Carboxylic Acids to Primary Alcohols: Hydride Reduction

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