Title of article
Mesoscopic simulations of electroosmotic flow and electrophoresis in nanochannels Original Research Article
Author/Authors
Jens Smiatek، نويسنده , , Marcus Müller Friederike Schmid، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
4
From page
1941
To page
1944
Abstract
We review recent dissipative particle dynamics (DPD) simulations of electrolyte flow in nanochannels. A method is presented by which the slip length image at the channel boundaries can be tuned systematically from negative to infinity by introducing suitably adjusted wall-fluid friction forces. Using this method, we study electroosmotic flow (EOF) in nanochannels for varying surface slip conditions and fluids of different ionic strength. Analytic expressions for the flow profiles are derived from the Stokes equation, which are in good agreement with the numerical results. Finally, we investigate the influence of EOF on the effective mobility of polyelectrolytes in nanochannels. The relevant quantity characterizing the effect of slippage is found to be the dimensionless quantity image, where image is an effective electrostatic screening length at the channel boundaries.
Keywords
Dissipative particle dynamics , Slip length , Electrophoresis , Microfluidics , Electroosmotic flow , Electrolytes
Journal title
Computer Physics Communications
Serial Year
2011
Journal title
Computer Physics Communications
Record number
1138364
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