13.4 : Substituent Effects on Acidity of Carboxylic Acids
The acidity of carboxylic acids is influenced by the nature of the substituents bounded to the functional group. The acid strength is determined by the stability of the carboxylate anion—the conjugate base formed by dissociating the corresponding carboxylic acid.
Suppose the carboxylic acid bears an electron-withdrawing substituent. In that case, it stabilizes the conjugate base through the electron-withdrawing inductive effect, thereby decreasing the electron density on the carboxylate anion and enhancing the carboxylic acid's acidity. The presence of an electron-donating substituent destabilizes the conjugate carboxylate anion via the electron-donating inductive effect and, thus, decreases the acidity of the carboxylic acid.
The acidity of carboxylic acids also depends on the electronegativity of the substituent, the number of substituents bonded, and the proximity of the substituent from the –COOH group. Thus, fluoroacetic acid is more acidic than chloroacetic acid, as fluorine is more electronegative than chlorine. Trichloroacetic acid is more acidic than di- and monochloro acetic acid.
From Chapter 13:
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13.4 : Substituent Effects on Acidity of Carboxylic Acids
Carboxylic Acids
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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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13.5 : 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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13.14 : Carboxylic Acids to Acid Chlorides
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13.15 : Carboxylic Acids to Primary Alcohols: Hydride Reduction
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