Instabilities of charged polyampholytes
- 1 February 1995
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 51 (2) , 1299-1312
- https://doi.org/10.1103/physreve.51.1299
Abstract
We consider polymers formed from a (quenched) random sequence of charged monomers of opposite signs. Such polymers, known as polyampholytes (PA’s), are compact when completely neutral and expanded when highly charged. We examine the transition between the two regimes by Monte Carlo simulations, and by analogies to charged drops. We find that the overall excess charge Q is the main determinant of the size of the PA’s. A polymer composed of N charges of ± is compact for Q<≊/ √N and expanded otherwise. The transition is reminiscent of the Rayleigh shape instability of a charged drop. A uniform excess charge causes the breakup of a fluid drop. We speculate that a uniformly charged polymer stretches out to a necklace shape. The inhomogeneities in charge distort the shape away from an ordered necklace.
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This publication has 42 references indexed in Scilit:
- Excess Charge in PolyampholytesEurophysics Letters, 1994
- Conformation of neutral polyampholyte chains in salt solutions: a light scattering studyMacromolecules, 1994
- Random and Alternating PolyampholytesEurophysics Letters, 1993
- Collapse of an Alternating Polyampholyte: Evidence for Tricriticality in 2 and 3 DimensionsEurophysics Letters, 1993
- Phase transition of a poly(acrylic acid) gel induced by polymer complexationThe Journal of Chemical Physics, 1992
- Conformations of polyampholytesPhysical Review Letters, 1992
- Theory of polyampholyte solutionsThe Journal of Chemical Physics, 1991
- The Nonergodic (“Spin-Glass–Like”) Phase of Heteropolymer with Quenched Disordered Sequence of LinksEurophysics Letters, 1989
- ENERGY CONSIDERATIONS IN THE ELECTROSTATIC DISPERSION OF LIQUIDSCanadian Journal of Physics, 1965
- Stability of a Conducting Droplet under the Influence of Surface Tension and Electrostatic ForcesAmerican Journal of Physics, 1963