Is the counterion condensation point on polyelectrolytes a trigger of structural transition?
Gerald S. Manning
Abstract
Gerald S. Manning
Abstract
Experimental data on well documented global polymer transitions can be correlated with the linear charge density critical for counterion condensation. Other data exhibit abrupt behavior at the counterion condensation point and may consistently be interpreted in terms of a transition between locally folded and extended structures. We suggest that the underlying cause of these observations is the onset of mechanical instability of locally folded structures at the counterion condensation point.
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Experimental data on well documented global polymer transitions can be correlated with the linear charge density critical for counterion condensation. Other data exhibit abrupt behavior at the counterion condensation point and may consistently be interpreted in terms of a transition between locally folded and extended structures. We suggest that the underlying cause of these observations is the onset of mechanical instability of locally folded structures at the counterion condensation point.
Key concepts: Counterion, Counterion condensation, Polyelectrolyte, Condensation, Chemical physics, Instability, Transition point, Critical point (mathematics)