Non-metals
A non-metal is an element that forms negative ions by gaining electrons. This means non-metals are electronegative. In the periodic table, non-metals are found on the right-hand side and at the top of each group.
General differences between metals and non-metals
| Property | Metals | Non-Metals |
|---|
| Electrical conductivity | Good conductors | Poor or non-conductors |
| Thermal conductivity | Good conductors | Poor or non-conductors |
| Appearance | Shiny (lustrous) | Dull (non-lustrous) |
| Melting and boiling points | High | Low |
| Density | High | Low |
| Malleability (can be hammered) | Malleable | Brittle (break easily) |
| Ductility (can be drawn into wires) | Ductile | Not ductile |
| Ion formation | Lose electrons (electropositive) | Gain electrons (electronegative) |
| Nature of oxides | Basic or amphoteric | Acidic or neutral |
| Halide formation | Less stable halides | Stable covalent halides (e.g. H₂O) |
Chemical properties of non-metals
1. Oxidizing property of non-metals
Non-metals tend to gain electrons and form negative ions.
Examples:
Cl+e−→Cl−
O+2e−→O2−
N+3e−→N3−
The number of electrons gained = valency of the non-metal.
So:
Chlorine (Cl) has valency 1
Oxygen (O) has valency 2
Nitrogen (N) has valency 3
2. Strong and weak oxidizing agents
Non-metals are good oxidizing agents because they accept electrons. Among the halogens (Group VII), fluorine is the strongest oxidizing agent, and the oxidizing strength decreases down the group.
Example:
Br2(l)+2e−→2Br−(aq)
2Fe2++Br2→2Fe3++2Br−
(Bromine oxidizes Fe2+ to Fe3+)
3. Displacement reactions among non-metals
A more reactive non-metal can displace a less reactive one from its compound.
Examples:
- 2NaCl(aq)+F2→2NaF(aq)+Cl2(g)
- 2KBr(aq)+Cl2→2KCl(aq)+Br2(l)
- 2KI(aq)+Cl2→2KCl(aq)+I2(s)
Non-metals can also displace hydrogen from compounds:
- CH4(g)+Cl2(g)→CH3Cl(g)+HCl(g)
Example of visible change:
- Adding Br₂ to KI solution → red color fades, and black iodine crystals form:
2KI(aq)+Br2(l)→2KBr(aq)+I2(s)