The Reactivity Series and Displacement
Aligned to the AQA 8462 specification
- Topic
- Chemical changes
- Level
- Intermediate
- Reading time
- 7 min
- Published
- 2 July 2026
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Key takeaways
- When a metal reacts with oxygen it gains oxygen to form a metal oxide, so it is oxidised; oxidation is gain of oxygen and reduction is loss of oxygen.
- The reactivity series from most to least reactive is potassium, sodium, lithium, calcium, magnesium, zinc, iron, copper; carbon and hydrogen are placed in it for comparison.
- A metal's reactivity depends on how readily it forms a positive ion; the more easily it loses electrons to form a positive ion, the more reactive it is.
- Potassium, sodium, lithium and calcium react with cold water to give a metal hydroxide plus hydrogen; magnesium, zinc and iron react with dilute acids but not readily with cold water.
- A more reactive metal displaces a less reactive metal from a compound, for example iron displaces copper from copper sulfate solution.
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Key terms
- Oxidation (in terms of oxygen)
- The gain of oxygen by a substance during a reaction.
- Reduction (in terms of oxygen)
- The loss of oxygen by a substance during a reaction.
- Reactivity series
- A list of metals arranged in order of how readily they react, from most to least reactive.
- Displacement reaction
- A reaction in which a more reactive metal takes the place of a less reactive metal in a compound.
Frequently asked questions
From most to least reactive the metals are potassium, sodium, lithium, calcium, magnesium, zinc, iron and copper. The non-metals carbon and hydrogen are added for comparison, sitting between zinc and copper, so carbon lies above iron and hydrogen just above copper.
A more reactive metal loses electrons and forms a positive ion more readily than a less reactive metal. So it takes the place of the less reactive metal in a compound, pushing that metal out as a pure element. This is a displacement reaction.
Gaining oxygen is oxidation. When a metal reacts with oxygen to form a metal oxide it gains oxygen, so it is oxidised. Losing oxygen is reduction, which is what happens to a metal oxide when its metal is extracted.
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