Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on steady state behaviour under simplified boundary conditions. These are Neumann boundary conditions for the voltage at the pore walls, and in some cases also Donnan equilibrium boundary conditions for concentrations and voltages at both entrances of the nanopore. In this paper, we report time-dependent and steady state PNP simulations under less restrictive boundary conditions, including Neumann boundary conditions applied throughout the membrane relatively far away from the nanopore.We simulated ion currents through cylindrical and conical nanopores with several surface charge configurations, studying the spatial and temporal dependence of t...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Recently, the experimentally observed asymmetric properties of ion transport in charged conical nano...
Abstract We show that a semiconductor membrane made of two thin layers of opposite (n- and p-) dopin...
Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on...
<div><p>Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have fo...
Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on...
ABSTRACT: Rectifying nanopores feature ion currents that are higher for voltages of one polarity com...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Current rectification is well known in ion transport through nanoscale pores and channel devices. Th...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
<p>The 3 nanopores present (A) <i>g</i>∣<sub>0 V</sub> = 9 nS, (B) <i>g</i>∣<sub>0 V</sub> = 11 nS, ...
The ion current rectification behavior of bioinspired nanopores is modeled by adopting a bullet-shap...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Recently, the experimentally observed asymmetric properties of ion transport in charged conical nano...
Abstract We show that a semiconductor membrane made of two thin layers of opposite (n- and p-) dopin...
Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on...
<div><p>Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have fo...
Previous reports on Poisson-Nernst-Planck (PNP) simulations of solid-state nanopores have focused on...
ABSTRACT: Rectifying nanopores feature ion currents that are higher for voltages of one polarity com...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Current rectification is well known in ion transport through nanoscale pores and channel devices. Th...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
<p>The 3 nanopores present (A) <i>g</i>∣<sub>0 V</sub> = 9 nS, (B) <i>g</i>∣<sub>0 V</sub> = 11 nS, ...
The ion current rectification behavior of bioinspired nanopores is modeled by adopting a bullet-shap...
Rectifying nanopores feature ion currents that are higher for voltages of one polarity compared to t...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Recently, the experimentally observed asymmetric properties of ion transport in charged conical nano...
Abstract We show that a semiconductor membrane made of two thin layers of opposite (n- and p-) dopin...