11.7 Carboxylic acids

Syllabus
0620–2026–2027
Topic
11.7
Level

Learning objectives

Predict the acid reactions of ethanoic acid

Reactant with ethanoic acid Products Observation
reactive metal metal ethanoate + hydrogen effervescence; metal dissolves
base / alkali metal ethanoate + water neutralisation; no gas
metal carbonate metal ethanoate + water + carbon dioxide effervescence

The salt name ends in ethanoate. Its formula combines CH₃COO⁻ ions with the metal ion in the ratio needed for electrical neutrality.

Reaction example Balanced equation Salt name
magnesium 2CH₃COOH + Mg → (CH₃COO)₂Mg + H₂ magnesium ethanoate
sodium hydroxide CH₃COOH + NaOH → CH₃COONa + H₂O sodium ethanoate
sodium carbonate 2CH₃COOH + Na₂CO₃ → 2CH₃COONa + H₂O + CO₂ sodium ethanoate

Choose the standard acid reaction first, then construct the ethanoate formula from the metal charge and balance the complete equation.

Metals form hydrogen; carbonates form carbon dioxide and water; bases form water only. Do not interchange these gas products.

Oxidise ethanol to ethanoic acid

Ethanol is oxidised to ethanoic acid either with acidified aqueous potassium manganate(VII) or by bacterial oxidation during vinegar production.

Route Oxidising source / condition Product
laboratory chemical oxidation acidified aqueous potassium manganate(VII) ethanoic acid
vinegar production bacteria oxidise ethanol using oxygen from air ethanoic acid

The oxidation change can be represented as: C₂H₅OH + 2[O] → CH₃COOH + H₂O.

Oxidation increases the oxygen content of the organic molecule. During vinegar production, the process is biological and requires exposure to oxygen rather than anaerobic ethanol fermentation.

Do not describe this conversion as reduction or simple fermentation. The required chemical reagent is acidified aqueous potassium manganate(VII), and the vinegar route is bacterial oxidation.

Form an ester from a carboxylic acid and an alcohol

A carboxylic acid reacts with an alcohol, using an acid catalyst, to form an ester and water.

carboxylic acid + alcohol ⇌ ester + water

Reactants Catalyst / condition Products
ethanoic acid + ethanol concentrated sulfuric acid and heat ethyl ethanoate + water
propanoic acid + methanol acid catalyst and heat methyl propanoate + water

Example structural equation: CH₃COOH + C₂H₅OH ⇌ CH₃COOC₂H₅ + H₂O.

The alcohol supplies the first, -yl part of the ester name; the acid supplies the second, -oate part.

Water is the second product, not hydrogen. Acidified potassium manganate(VII) oxidises alcohols; concentrated sulfuric acid is the catalyst used here for esterification.