What a learner can do afterwards
- States the conditions a ring must meet to be aromatic and tests a given structure against each
- Applies the electron count to charged rings such as the cyclopentadienyl anion and the tropylium cation
- Explains what antiaromatic means and why such rings distort to escape it
- Identifies which lone pairs of a heterocycle count towards the delocalised system and which do not
1 · Read
A ring counts as aromatic only when it passes four tests together. It must form a closed loop, lie flat, share its pi electrons all the way round, and hold 4n plus 2 of those electrons. Fail one test and the label does not apply.
Benzene is the model case with six pi electrons, which fits the rule with n equal to 1. All six of its carbon carbon bonds share one length, and it prefers substitution over addition so the shared ring survives.
The same count explains charged rings. The seven membered tropylium cation and the five membered cyclopentadienyl anion each hold six pi electrons, which is why both are stable. In rings holding nitrogen, only a lone pair sitting in a p orbital joins the count.
A flat conjugated ring with 4n electrons would lose stability instead of gaining it, so real rings twist or fix their bonds to escape. Cyclooctatetraene folds into a tub shape, which breaks the loop and leaves it nonaromatic rather than antiaromatic.
Aromatic rings are flat closed loops with 4n plus 2 shared pi electrons, and rings that fail a test distort to avoid the penalty.
2 · Watch
Take it off screen
Where it sits
8 questions wait behind this lesson, each with its answer explained. Every answer feeds the sky: stars light as they are learned, and dim when it is time to come back.