4.7 Article

Impact of asymmetry soft layers and ion partitioning on ionic current rectification in bipolar nanochannels

期刊

JOURNAL OF MOLECULAR LIQUIDS
卷 347, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.molliq.2021.118324

关键词

Bipolar nanochannel; Ion partitioning effect; Polyelectrolyte layer; Rectification factor; Electroosmotic flow

资金

  1. research council at Iran University of Science and Technology (IUST)

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This study investigated the impact of considering different properties for the soft layer and electrolyte on ion current rectification in bipolar soft nanochannels. The findings demonstrated that taking into account the differences in properties of the soft layer and electrolyte greatly improved the rectification factor.
When both positive and negative charges are present at the nanochannel surface, the system is called a bipolar nanochannel, or bipolar diode. Bipolar nanochannels have a much higher degree of rectification than unipolar nanochannels with asymmetric geometries because, in the backward mode, pass on an ionic current close to zero. In modeling bipolar soft nanochannels, it is usually assumed that the properties of the soft layer (PEL) and electrolyte are the same, which is not valid for soft layers with high charge densities. In the present work, the effect of considering different properties for the soft layer and electrolyte on the ion current rectification in cylindrical bipolar soft nanochannels was studied. To this end, by utilizing a numerical computational procedure using the finite element method (FEM), Poisson-Nernst-Planck (PNP) and Navier-Stokes (NS) equations were solved for steady-state conditions by considering different permittivities, diffusion coefficients, and dynamic viscosities for PEL and electrolyte. The model findings, which were verified through comparing with the existing theoretical data, revealed that considering differences in the properties of the soft layer and electrolyte led to a significant improvement in the rectification factor. For instance, at the bulk concentration of c(0) = 10mM, the rectification factor of 695 for a bipolar cylindrical soft nanochannel at eta(epsilon) = eta(mu) = 1; eta(D) = 2 reached a value of 13430 at eta(epsilon) = eta(D) = 0:6; eta(mu) = 2. For a similar system, at a bulk concentration of c(0) = 1mM and a symmetric soft layer (R-s,R-p = R-s,R-n = 5nm) the value of Rf was 1822, and it reached a value of nearly twice, i.e. 3535, where an asymmetric soft layer (R-s,R-p = 3nm < R-s,R-n = 7nm) was applied. (C) 2021 Elsevier B.V. All rights reserved.

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