Issue 40, 2016

Maximizing ion current rectification in a bipolar conical nanopore fluidic diode using optimum junction location

Abstract

The ion current rectification has been obtained as a function of the location of a heterojunction in a bipolar conical nanopore fluidic diode for different parameters to determine the junction location for maximum ion current rectification using numerical simulations. Forward current peaks for a specific location of the junction and reverse current decreases with the junction location due to a change in ion enrichment/depletion in the pore. The optimum location of the heterojunction shifts towards the tip with base/tip diameter and surface charge density, and towards the base with the electrolyte concentration. The optimum location of the heterojunction has been approximated by an equation as a function of pore length, base/tip diameter, surface charge density and electrolyte concentration. The study is useful to design a rectifier with maximum ion current rectification for practical purposes.

Graphical abstract: Maximizing ion current rectification in a bipolar conical nanopore fluidic diode using optimum junction location

Article information

Article type
Paper
Submitted
29 Jul 2016
Accepted
14 Sep 2016
First published
15 Sep 2016

Phys. Chem. Chem. Phys., 2016,18, 27958-27966

Maximizing ion current rectification in a bipolar conical nanopore fluidic diode using optimum junction location

K. P. Singh, Phys. Chem. Chem. Phys., 2016, 18, 27958 DOI: 10.1039/C6CP05280K

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