We present a modeling study of a nanopore-based transistor computed by a mean-field continuum theory (Poisson-Nernst-Planck, PNP) and a hybrid method including particle simulation (Local Equilibrium Monte Carlo, LEMC) that is able to take ionic correlations into account including finite size of ions. The model is composed of three regions along the pore axis with the left and right regions determining the ionic species that is the main charge carrier, and the central region tuning the concentration of that species and, thus, the current flowing through the nanopore. We consider a model of small dimensions with the pore radius comparable to the Debye-screening length (R_pore=lambda_D ~ 1), which, together with large surface charges provides ...
Modern track-etching methods allow the preparation of membranes containing a single charged conical ...
AbstractDuring release of vesicular content the resistance of the fusion pore sometimes changes rapi...
Ionic current transport and nanopores go hand in hand. Ionic current has been used to investigate pr...
The purpose of this work is to create a model of a nanofluidic transistor which is able to mimic the...
We study a model nanopore sensor with which a very low concentration of analyte molecules can be det...
We report a multiscale modeling study for charged cylindrical nanopores using three modeling levels ...
Biological ion channels and synthetic nanopores are responsible for passive transport of ions throug...
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...
We investigate a model nanopore sensor that is able to detect analyte ions that are present in the e...
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 ...
AbstractThe electric field-induced translocation of cylindrical particles through nanopores with cir...
Modern track-etching methods allow the preparation of membranes containing a single charged conical ...
Modern track-etching methods allow the preparation of membranes containing a single charged conical ...
AbstractDuring release of vesicular content the resistance of the fusion pore sometimes changes rapi...
Ionic current transport and nanopores go hand in hand. Ionic current has been used to investigate pr...
The purpose of this work is to create a model of a nanofluidic transistor which is able to mimic the...
We study a model nanopore sensor with which a very low concentration of analyte molecules can be det...
We report a multiscale modeling study for charged cylindrical nanopores using three modeling levels ...
Biological ion channels and synthetic nanopores are responsible for passive transport of ions throug...
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...
We investigate a model nanopore sensor that is able to detect analyte ions that are present in the e...
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 ...
AbstractThe electric field-induced translocation of cylindrical particles through nanopores with cir...
Modern track-etching methods allow the preparation of membranes containing a single charged conical ...
Modern track-etching methods allow the preparation of membranes containing a single charged conical ...
AbstractDuring release of vesicular content the resistance of the fusion pore sometimes changes rapi...
Ionic current transport and nanopores go hand in hand. Ionic current has been used to investigate pr...