The nylon rope trick
An interface between two immiscible solutions weaves nylon-6,6; watch the chain grow amide by amide as it is pulled away.
Goal
Distinguish condensation polymerisation (small molecule released at each step) from addition polymerisation, and describe nylon-6,6 repeat unit.
Apparatus and reagents
The chain viewer below; for a real demo: hexamethylenediamine in water over adipoyl chloride in cyclohexane, tweezers, gloves.
Procedure
- Watch the chain grow: every second bead (blue) marks an amide formed when an amine attacks an acyl chloride.
- Imagine the interface: diamine diffuses up, diacyl chloride down, and the film only exists right at the boundary — pulling it away exposes fresh surface.
- Count one repeat unit: — six carbons from the diamine, four plus two carbonyls from the acid chloride.
- Contrast with addition polymerisation: polyethylene grows without releasing any small molecule.
What to observe
- The fibre can be pulled continuously because the reaction is fast and interfacial — monomers meet only at the film surface.
- Each amide bond releases HCl (neutralised by the amine or added base), which is why this is a condensation, not an addition.
Explanation
Hexamethylenediamine and adipoyl chloride are each difunctional, so every encounter extends the chain by a new amide bond and one HCl. Because the two monomers sit in immiscible layers, polymerisation is confined to the interface: a film forms and pulling it out winds the polymer into a continuous "rope". Carothers used exactly this chemistry at DuPont in 1935 to make the first fully synthetic fibre.
Chemists behind it
Related topics
Virtual experiment: a simplified model to build intuition. It does not replace real lab work or safety training; never repeat chemistry at home without supervision.