Gel and free solution electrophoresis of variably charged polymers
- 1 January 1996
- journal article
- other electrophoresis-problem
- Published by Wiley in Electrophoresis
- Vol. 17 (6) , 1151-1160
- https://doi.org/10.1002/elps.1150170627
Abstract
To assess the role of charge density on polyelectrolyte mobility, both gel and free solution electrophoresis experiments are performed on poly(acrylic acid) and acrylic acid/acrylamide copolymers. Control of charge density for poly(acrylic acid) is achieved through solution pH, while control for acrylic acid/acrylamide copolymers is obtained through chain composition. In either approach, the effective fraction of charged repeat units can be varied from 0 to 100% without a major interruption of solvent quality. Polyelectrolyte mobility in the presence of a monovalent counterion is observed to rise linearly with charge density when this density is low. A transition to charge density independence then occurs over a surprisingly narrow window of charge density. For vinyl polymers of the sort examined here, the transition occurs when 35–40% of the repeat units are charged. These observations are qualitatively consistent with the free solution electrophoresis model proposed by Manning and several previous data sets. An unexpected overlap of normalized gel and free solution data reveals that the charge density exerts a comparable influence in either environment. Results from the present study help define the experimental conditions in which electrophoresis can provide polymer separation by charge density and those in which the method can provide polymer separation by molecular weight.Keywords
This publication has 47 references indexed in Scilit:
- Electrophoretic light scattering study of counterion condensation of polylysineMacromolecules, 1993
- Agarose gel electrophoresis of high molecular weight, synthetic polyelectrolytesMacromolecules, 1989
- Is the counterion condensation point on polyelectrolytes a trigger of structural transition?The Journal of Chemical Physics, 1988
- Sequence distribution of carboxyl groups in hydrolyzed polyacrylamideMacromolecules, 1985
- Direct observation of the transition to counterion condensationThe Journal of Chemical Physics, 1984
- Effect of charge density and ion binding on intrinsic viscosity of polyelectrolyte solutionsMacromolecules, 1981
- Electrophoretic light scattering of linear polyelectrolyte aqueous salt solutionsThe Journal of Physical Chemistry, 1979
- High‐molecular‐weight hydrolyzed polyacrylamides. I. Characterization. Effect of salts on the conformational propertiesJournal of Polymer Science: Polymer Chemistry Edition, 1979
- Polyelectrolyte Excluded Volume ParadoxMacromolecules, 1978
- Electrophoresis of a Polyelectrolyte in Solutions of High Ionic StrengthJournal of the American Chemical Society, 1964