We investigate transport properties of model polyelectrolyte systems at physiological ionic strength (0.154 M). Covering a broad range of flow length scales-from diffusion of molecular probes to macroscopic viscous flow-we establish a single, continuous function describing the scale dependent viscosity of high-salt polyelectrolyte solutions. The data are consistent with the model developed previously for electrically neutral polymers in a good solvent. The presented approach merges the power-law scaling concepts of de Gennes with the idea of exponential length scale dependence of effective viscosity in complex liquids. The result is a simple and applicable description of transport properties of high-salt polyelectrolyte solutions at all len...
We study the low-frequency electrical conductivity of flexible charged polymer chains in salt-free a...
Langevin dynamics simulations are performed to study polyelectrolytes driven through a nanopore in m...
The structure and dynamics of polyelectrolytes differ from those of neutral polymers. How these diff...
We measured macroscopic viscosity as well as nanoviscosity experienced by molecular probes diffusing...
ABSTRACT: We extend and generalize the scaling picture of de Gennes et al. and Pfeuty to both unenta...
Elements of Odijk-Skolnick-Fixman and Yamakawa-Fujii polymer solution theories have been modified to...
In this work, a comprehensive study about the influence on shear viscosity of polyelectrolyte concen...
We investigate the viscosity dependence on concentration and molecular weight of semiflexible polyel...
In this review, we focus on the electrical conductivity of aqueous polyelectrolyte solutions in the ...
The swelling of the viscosity radius, alpha(eta), and the universal viscosity ratio, U-nR, have been...
Two series of highly charged linear aliphatic polymerssodium polystyrene-4-sulfonate and random cop...
Polyelectrolytes are macromolecules which carry a large quantity of ionizable groups along their cha...
Polyelectrolyte multilayers (PEMs) have significant potential in many technologies, yet the dynamics...
Polymerized ionic liquids (PILs) are a special class of polyelectrolytes with ionic liquid (IL) spec...
565-570Viscosity studies of four new types of cationic polyelectrolytes (mol. wt. 1167 to 6432), whe...
We study the low-frequency electrical conductivity of flexible charged polymer chains in salt-free a...
Langevin dynamics simulations are performed to study polyelectrolytes driven through a nanopore in m...
The structure and dynamics of polyelectrolytes differ from those of neutral polymers. How these diff...
We measured macroscopic viscosity as well as nanoviscosity experienced by molecular probes diffusing...
ABSTRACT: We extend and generalize the scaling picture of de Gennes et al. and Pfeuty to both unenta...
Elements of Odijk-Skolnick-Fixman and Yamakawa-Fujii polymer solution theories have been modified to...
In this work, a comprehensive study about the influence on shear viscosity of polyelectrolyte concen...
We investigate the viscosity dependence on concentration and molecular weight of semiflexible polyel...
In this review, we focus on the electrical conductivity of aqueous polyelectrolyte solutions in the ...
The swelling of the viscosity radius, alpha(eta), and the universal viscosity ratio, U-nR, have been...
Two series of highly charged linear aliphatic polymerssodium polystyrene-4-sulfonate and random cop...
Polyelectrolytes are macromolecules which carry a large quantity of ionizable groups along their cha...
Polyelectrolyte multilayers (PEMs) have significant potential in many technologies, yet the dynamics...
Polymerized ionic liquids (PILs) are a special class of polyelectrolytes with ionic liquid (IL) spec...
565-570Viscosity studies of four new types of cationic polyelectrolytes (mol. wt. 1167 to 6432), whe...
We study the low-frequency electrical conductivity of flexible charged polymer chains in salt-free a...
Langevin dynamics simulations are performed to study polyelectrolytes driven through a nanopore in m...
The structure and dynamics of polyelectrolytes differ from those of neutral polymers. How these diff...