Properties of Ionic and Molecular Substances
Aligned to the AQA 8462 specification
- Level
- Intermediate
- Reading time
- 6 min
- Published
- 2 July 2026
On this page
Key takeaways
- Ionic compounds have high melting and boiling points because the strong electrostatic forces holding the giant lattice together, acting in all directions, need a lot of energy to overcome.
- Ionic compounds conduct electricity only when molten or dissolved in water, because only then are the charged ions free to move and carry charge.
- Small molecules have low melting and boiling points because the forces between molecules (intermolecular forces) are weak and easily overcome; the strong covalent bonds inside the molecules do not break.
- Intermolecular forces get stronger as molecules get larger, so bigger molecules have higher melting and boiling points.
- Small molecules do not conduct electricity because they have no overall electric charge; polymers are solids at room temperature because their large molecules have relatively strong intermolecular forces.
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Key terms
- Intermolecular force
- A weak force of attraction between separate molecules, much weaker than the covalent bonds inside a molecule.
- Giant ionic lattice
- A regular 3D arrangement of oppositely charged ions held together by strong electrostatic forces acting in all directions.
- Molten
- Melted, so that the substance is a liquid; a molten ionic compound has ions free to move.
- Polymer
- A very large molecule made of many small repeating units joined by strong covalent bonds.
Frequently asked questions
To conduct electricity, charged particles must be free to move. In a solid ionic compound the ions are locked in the lattice, so it does not conduct. When molten or dissolved in water the ions are free to move and carry charge, so it conducts.
Small molecules have weak intermolecular forces between them, which need little energy to overcome, so they melt and boil at low temperatures. The strong covalent bonds inside each molecule are not broken during melting or boiling.
Polymers are very large molecules, so the intermolecular forces between the long chains are relatively strong. These forces need enough energy to overcome that polymers are solids at room temperature, unlike small molecules.
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