Metallic Bonding

Discover the sea of electrons that holds metals together.

  • Define and explain Metallic Bonding in your own words
  • Use key terms such as metallic bond accurately
  • Apply what you have learned to new examples and questions
  • Avoid the common mistakes learners make with this topic

This lesson focuses on Metallic Bonding: discover the sea of electrons that holds metals together.

Definition: Metallic Bonding

Discover the sea of electrons that holds metals together.

Key ideas

Ionic bonding is electron transfer

When a metal meets a non-metal, the metal loses electrons to form positive ions while the non-metal gains them to form negative ions — for example, sodium loses one electron and chlorine gains one, giving Na⁺ and Cl⁻. The oppositely charged ions attract strongly in all directions, building a giant lattice. This is why ionic compounds have high melting points: melting means breaking those strong attractions.

Covalent bonding is electron sharing

Two non-metal atoms share pairs of electrons so that each gains a full outer shell — in methane (CH₄), carbon shares four pairs with four hydrogen atoms. Small molecules like CH₄ and H₂O have weak forces between the molecules, so they melt and boil easily despite the strong bonds within each molecule. Giant covalent structures like diamond are different: every atom is joined by strong covalent bonds, making them extremely hard with very high melting points.

Key term — metallic bond: The attraction between positive metal ions and a sea of delocalised electrons.

Worked example: Metallic Bonding

Why are metals malleable?

The layers of positive ions can slide over each other without breaking the metallic bond, because the sea of delocalised electrons simply moves with them.

Answer: The layers of positive ions can slide over each other without breaking the metallic bond, because the sea of delocalised electrons simply moves with them.

Common mistakes
  • Drawing ionic bonding as sharing Ionic bonding is the transfer of electrons followed by attraction between the resulting ions — not sharing. Sharing electrons is covalent bonding; mixing the two up is a classic exam error.
  • Saying the covalent bonds break when ice melts Melting breaks the weak forces between molecules, not the strong covalent bonds within them. The H₂O molecules stay intact when ice melts — that is why water is still water.

Practice

Describe the electron transfer when magnesium reacts with oxygen. What ions form?
Magnesium is in Group 2, oxygen in Group 6.

Magnesium loses its 2 outer electrons to form Mg²⁺; oxygen gains 2 electrons to form O²⁻. The Mg²⁺ and O²⁻ ions attract to form magnesium oxide.

Explain why diamond is hard but graphite conducts electricity.
Both are carbon — compare their structures.

Diamond has a rigid 3D network of covalent bonds, making it hard. Graphite has layers with delocalised electrons between them, and these mobile electrons carry charge, so it conducts.

Nitrogen (N₂) is a gas at room temperature. Explain why, in terms of bonding.
What forces exist between N₂ molecules?

N₂ is a small covalent molecule with only weak intermolecular forces between molecules, so little energy is needed to separate them — hence a gas.

Explain why molten sodium chloride conducts electricity but solid sodium chloride does not.
What must move to carry charge?

Conduction needs mobile charged particles. In the solid the ions are locked in the lattice; when molten the ions are free to move and carry charge.

Quick check

Metallic Bonding — quick check

Which of these best defines "metallic bond"?

The attraction between positive metal ions and a sea of delocalised electrons.

Hydrogen chloride is covalent, yet its solution in water conducts electricity. Explain.

In water, HCl molecules release H⁺ ions (forming hydrochloric acid). These free-moving ions carry charge, so the solution conducts.
Key takeaways
  • Metallic Bonding: discover the sea of electrons that holds metals together.
  • Ionic bonding is electron transfer: When a metal meets a non-metal, the metal loses electrons to form positive ions while the non-metal gains them to form negative ions — for example, sodium loses one electron and chlorine gains one, giving Na⁺ and Cl⁻.
  • covalent bond: A shared pair of electrons between two atoms, usually two non-metals.
  • Watch out for: drawing ionic bonding as sharing