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arxiv: 0709.3850 · v1 · pith:ETBJQATUnew · submitted 2007-09-24 · ⚛️ physics.chem-ph · cond-mat.soft· physics.bio-ph

Effect of Salt Concentration on the Electrophoretic Speed of a Polyelectrolyte through a Nanopore

classification ⚛️ physics.chem-ph cond-mat.softphysics.bio-ph
keywords nanoporedebyeelectrophoreticlengthpolyelectrolytespeedaccountaxially
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In a previous paper [S. Ghosal, Phys. Rev. E 74, 041901 (2006)] a hydrodynamic model for determining the electrophoretic speed of a polyelectrolyte through an axially symmetric slowly varying nanopore was presented in the limit of a vanishingly small Debye length. Here the case of a finite Debye layer thickness is considered while restricting the pore geometry to that of a cylinder of length much larger than the diameter. Further, the possibility of a uniform surface charge on the walls of the nanopore is taken into account. It is thereby shown that the calculated transit times are consistent with recent measurements in silicon nanopores.

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