[[abstract]]The diffusiophoresis of a polyelectrolyte subject to an applied salt concentration gradient is modeled theoretically. The entirely porous type of particle is capable of simulating entities such as DNA, protein, and synthetic polymeric particles. The dependence of the diffusiophoretic behavior of the polyelectrolyte on its physical properties, and the types of ionic species and their bulk concentrations are discussed in detail. We show that in addition to the effects coming from the polarization of double layer and the difference in the ionic diffusivities, the polarization of the condensed counterions inside the polyelectrolyte might also be significant. The last effect, which has not been reported previously, reduces both the e...
For ternary polymer–salt–water systems at low polymer concentration (0.5%, w/w), we have experimenta...
[[abstract]]The influence of the shape of a polyelectrolyte (PE) on its electrophoretic behavior in ...
Colloidal particles in electrolytes move in response to electric fields (electrophoresis) and salt c...
[[abstract]]The diffusiophoresis of a pH-regulated, zwitterionic polyelectrolyte (PE) simulating ent...
[[abstract]]The diffusiophoresis of a non-spherical polyelectrolyte (PE) is modeled theoretically by...
[[abstract]]Extending previous analyses on rigid particles to non-rigid ones, we model the diffusiop...
[[abstract]]Considering the potential applications of diffusiophoresis conducted in nanodevices, a t...
[[abstract]]Considering recent application of concentration driven motion of charged nanoparticles i...
[[abstract]]The diffusiophoresis of a soft, pH-regulated particle comprising a rigid core and a poly...
[[abstract]]The potential of separating colloidal particles through simultaneous application of a sa...
The electrophoresis of a deformable polyelectrolyte (PE) is studied theoretically by considering a P...
[[abstract]]The diffusiophoresis of a pH-regulated polyelectrolyte (PE) along the axis of a charged ...
We derive the general expression for the diffusiophoretic mobility of a soft particle (i.e., polyele...
Diffusiophoresis is the movement of particles as a result of a concentration gradient, where the par...
[[abstract]]The diffusiophoresis of a charge-regulated spherical particle normal to two parallel dis...
For ternary polymer–salt–water systems at low polymer concentration (0.5%, w/w), we have experimenta...
[[abstract]]The influence of the shape of a polyelectrolyte (PE) on its electrophoretic behavior in ...
Colloidal particles in electrolytes move in response to electric fields (electrophoresis) and salt c...
[[abstract]]The diffusiophoresis of a pH-regulated, zwitterionic polyelectrolyte (PE) simulating ent...
[[abstract]]The diffusiophoresis of a non-spherical polyelectrolyte (PE) is modeled theoretically by...
[[abstract]]Extending previous analyses on rigid particles to non-rigid ones, we model the diffusiop...
[[abstract]]Considering the potential applications of diffusiophoresis conducted in nanodevices, a t...
[[abstract]]Considering recent application of concentration driven motion of charged nanoparticles i...
[[abstract]]The diffusiophoresis of a soft, pH-regulated particle comprising a rigid core and a poly...
[[abstract]]The potential of separating colloidal particles through simultaneous application of a sa...
The electrophoresis of a deformable polyelectrolyte (PE) is studied theoretically by considering a P...
[[abstract]]The diffusiophoresis of a pH-regulated polyelectrolyte (PE) along the axis of a charged ...
We derive the general expression for the diffusiophoretic mobility of a soft particle (i.e., polyele...
Diffusiophoresis is the movement of particles as a result of a concentration gradient, where the par...
[[abstract]]The diffusiophoresis of a charge-regulated spherical particle normal to two parallel dis...
For ternary polymer–salt–water systems at low polymer concentration (0.5%, w/w), we have experimenta...
[[abstract]]The influence of the shape of a polyelectrolyte (PE) on its electrophoretic behavior in ...
Colloidal particles in electrolytes move in response to electric fields (electrophoresis) and salt c...