We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and find that it is to a large extent determined by the thermoelectric response of the electrolyte solution. The thermally induced salinity gradient leads in general to a strong increase with temperature. The difference of the heat of transport of co-ions and counterions gives rise to a thermoelectric field that drives the colloid to the cold or to the warm, depending on the sign of its charge. Our results provide an explanation for recent experimental findings on thermophoresis in colloidal suspensions
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
Thermally driven colloidal transport is, to a large extent, due to the thermoelectric or Seebeck eff...
We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and...
We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and...
We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
We study the thermophoretic coefficient DT of a charged colloid. The non-uniform electrolyte is char...
We study the thermophoretic coefficient DT of a charged colloid. The non-uniform electrolyte is char...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient DT of a charged colloid. The non-uniform electrolyte is char...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
Thermally driven colloidal transport is, to a large extent, due to the thermoelectric or Seebeck eff...
We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and...
We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and...
We study the thermal diffusion coefficient D_{T} of a charged colloid in a temperature gradient, and...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
A temperature gradient acts like an external field on colloidal suspensions and drives the solute pa...
We study the thermophoretic coefficient DT of a charged colloid. The non-uniform electrolyte is char...
We study the thermophoretic coefficient DT of a charged colloid. The non-uniform electrolyte is char...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient DT of a charged colloid. The non-uniform electrolyte is char...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
We study the thermophoretic coefficient D_{T} of a charged colloid. The non-uniform electrolyte is c...
Thermally driven colloidal transport is, to a large extent, due to the thermoelectric or Seebeck eff...