3.3.2—Homolytic fission
- Syllabus
- First assessment 2025
- Objective
- 3.3.2
- Level
- SL
Cl2(g)→2Cl⋅(g)underUVlightorheat
Homolytic cleavage gives one electron to each fragment. Use single-electron arrows to show radical movement in the chain mechanism.
Draw two single-barbed arrows from the breaking X–X bond, one toward each atom, to account for both electrons. The UV or heat step creates radicals and is initiation; a step that consumes one radical and forms another belongs to propagation.
Representative question
Write an equation for the initiation reaction.
Cl2( g)→2Cl⋅(g)↓
Marking guidance:
Accept 21Cl2( g)→Cl⋅(g).
Do not accept equations without a dot indicating the radical.
Retrieve the route: locate the unpaired electron, split the bond homolytically, initiate with UV or heat, propagate by single-electron steps and terminate by radical combination.
Every propagation step must regenerate a radical, and every radical symbol and single-electron movement must be shown where required.