Introduction to Bases

Bases and alkalis: definitions, aqueous hydroxide ions, neutralisation and the ammonium-ion reaction.

  • SEC G3 Pure Chemistry 2027
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Learning objectives

  • describe the reaction between hydrogen ions and hydroxide ions to produce water, H+ + OH– → H2O, as neutralisation
  • describe the characteristic properties of bases in reactions with acids and with ammonium salts

“Base” and “alkali” are related but not identical. Keeping their definitions separate makes later reaction and solubility questions much clearer.

1. Definition

A. Base

A base is a substance that neutralises an acid by accepting H + (aq) ions (forming a salt).

B. Alkali

An alkali is a base that is soluble in water and produces hydroxide ions, OH⁻(aq), in solution.

2. Key Ideas

  • Bases neutralise acids to form salts. Many common bases at O-Level also form water (metal oxides/hydroxides), but ammonia is an exception.
  • Alkalis are bases, but not all bases are alkalis (many bases are insoluble).
  • The particles that make solutions alkaline are hydroxide ions, OH⁻(aq).

3. Detailed Explanations

Quick Recall (base vs alkali)
  • Base: neutralises an acid by accepting H + (aq).
  • Alkali: soluble base that produces OH⁻(aq) in water.
  • Neutralisation ionic equation: H + (aq) + OH⁻(aq) → H₂O(l).
  • Ammonia is a base but can form ammonium salts without water (e.g., NH₃ + HCl → NH₄Cl).

A. Base vs alkali (do not confuse these)

Most bases you meet at O-Level are metal oxides and metal hydroxides.

  • Many metal oxides/hydroxides are bases because they neutralise acids.
  • Only the ones that dissolve in water are alkalis.
CategoryExamples (O-Level)
Insoluble basesCuO(s), MgO(s), PbO(s)
Soluble bases (alkalis)NaOH(aq), KOH(aq), Ca(OH)₂(aq), NH₃(aq)
Where the tests live

Most “alkali properties” questions (pH, indicators, conductivity, neutralisation) are covered in: Physical & Chemical Properties of Alkalis.

B. Neutralisation (acid + base)

Neutralisation is when an acid reacts with a base to form a salt (and often water).

Ionic equation (the one that scores marks): H + (aq) + OH⁻(aq) → H₂O(l)

Examples: HCl(aq) + NaOH(aq) → NaCl(aq) + H₂O(l) H₂SO₄(aq) + ZnO(s) → ZnSO₄(aq) + H₂O(l)

Exception you must not overclaim

Do not write “base + acid → salt + water” as an absolute rule.
Ammonia is a base, but it forms an ammonium salt (no water): NH₃(aq) + HCl(aq) → NH₄Cl(aq)

C. Bases reacting with ammonium salts

When an ammonium salt is warmed with an alkali, ammonia gas is released:

NH₄ + (aq) + OH⁻(aq) → NH₃(g) + H₂O(l)

The ammonia turns damp red litmus paper blue. This is the prescribed test for the ammonium ion.

4. Common Mistakes

  • Defining a base as “produces OH⁻ in water” (that is the definition of an alkali, not a base).
  • Writing “base + acid → salt + water” as an absolute rule (ammonia forms ammonium salts without water).
  • Forgetting to warm the ammonium salt with aqueous sodium hydroxide.
  • Testing ammonia with dry rather than damp red litmus paper.

5. Exam Tips

Two sentences to memorise
  • A base neutralises an acid by accepting H + (aq) ions (forming a salt).
  • An alkali is a soluble base that produces OH⁻(aq) in water.
  • If the question asks for the ionic equation for neutralisation, write H + (aq) + OH⁻(aq) → H₂O(l).
  • If the question asks you to classify a substance as an alkali, mention soluble in water + produces OH⁻(aq).

6. Worked Examples

Modelled example 1

Classify base vs alkali

Core

Problem

Classify each as base only or alkali: CuO, NaOH and NH₃(aq).
Study the worked solution
  1. Classify copper(II) oxide

    Method

    Describe CuO as a base but not an alkali.

    Reason

    It neutralises acids but is insoluble in water.

    Working

    CuO: base only.
  2. Classify sodium hydroxide

    Method

    Describe NaOH as an alkali.

    Reason

    It is a soluble base that produces OH⁻(aq) ions.

    Working

    NaOH(aq) → Na + (aq) + OH⁻(aq).
  3. Classify aqueous ammonia

    Method

    Describe NH₃(aq) as an alkali.

    Reason

    It is a soluble base and produces some OH⁻(aq) through partial reaction with water.

    Working

    NH₃(aq): alkali.

Guided practice 2

Neutralisation ionic equation

About 4 min

Problem

Write the ionic equation for neutralisation between an acid and an alkali.

Keep only reacting ions

Net ionic equation

Hints

Hint 1: identify reacting ions
Acids supply H + (aq) and alkalis supply OH⁻(aq).
Hint 2: combine charges
One + 1 ion and one -1 ion form neutral water.
View solution step by step
  1. Select the reacting species

    Method

    Use H + (aq) and OH⁻(aq).

    Reason

    Other ions from the acid and alkali are spectators in the net change.

    Working

    Reactants: H + (aq), OH⁻(aq).
  2. Write the balanced change

    Method

    Combine the ions in a 1:1 ratio to form water.

    Reason

    Atoms and total charge are balanced.

    Working

    H + (aq) + OH⁻(aq) → H₂O(l).

Common misconception 3

Spot the overclaim

Find and correct the mistake

Learner claim

“Bases dissolve in water to form hydroxide ions.” What is overclaimed, and how should the sentence be corrected?

Separate the broader and narrower classes

Correct subject
Insoluble base counterexample

View solution step by step
  1. Locate the overclaim

    Method

    Reject “all bases dissolve”.

    Reason

    Some bases, including CuO, are insoluble in water.

    Working

    CuO is a base but not an alkali.
  2. Correct the definition

    Method

    Replace “bases” with “alkalis”.

    Reason

    Alkali is the term for a soluble base producing OH⁻(aq).

    Working

    “Alkalis are soluble bases that produce OH⁻(aq) ions in water.”

Challenge 4

Test an ammonium salt

Minimal support

Procedure transfer

Describe how to test a solution for ammonium ions, including reagent, condition, observation and conclusion.

Build the complete test

Reagent and condition
Positive observation

Hints

Hint 1: release ammonia
Ammonium ions react with hydroxide ions when warmed.
Hint 2: test the basic gas
Use damp red litmus paper for the evolved ammonia.
View solution step by step
  1. Add reagent and warm

    Method

    Add aqueous sodium hydroxide to the sample and warm gently.

    Reason

    Hydroxide ions release ammonia gas from ammonium ions.

    Working

    NH₄ + (aq) + OH⁻(aq) → NH₃(g) + H₂O(l).
  2. Test the gas

    Method

    Expose damp red litmus paper to the gas.

    Reason

    Ammonia is alkaline only when it dissolves in the moisture on the paper.

    Working

    Damp red litmus turns blue, confirming ammonium ions.

7. Mind Stretchers

Mind stretcher 1: Ammonia trapExtension

Question: A student writes: “Neutralisation always forms water.” Use ammonia to prove the sentence is wrong.

Show Answer

Ammonia is a base but reacts with hydrochloric acid to form ammonium chloride only: NH₃(aq) + HCl(aq) → NH₄Cl(aq) No water is formed, so “always forms water” is wrong.

Mind stretcher 2: Particle logicExtension

Question: Explain why aqueous sodium hydroxide conducts electricity.

Show Answer

It contains mobile ions, Na + (aq) and OH⁻(aq), which carry charge through the solution.

8. Quiz

Quiz Time!

Test yourself on base versus alkali, neutralisation and the ammonium-ion reaction.

Go to Quiz Page